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yet."},{"type":"h4","text":"TECHNOLOGY"},{"type":"h1","text":"Metabolomics"},{"type":"p","text":"The comprehensive qualitative and quantitative study of all the small molecules in an organism."},{"type":"h3","text":"Technology to drive breakthrough science"},{"type":"p","text":"The Buck’s Metabolomics Core has analytical and informatics capabilities for untargeted (comprehensive) and targeted analysis of metabolites and peptides from biofluids (plasma and serum) and tissue extracts from vertebrate and invertebrate animal models."},{"type":"p","text":"Along with relative and absolute levels of metabolites, the platform has also developed comprehensive metabolic flux analysis workflows in cell culture, biofluids, and invertebrate disease models, providing a snapshot of the metabolic state of normal and disease states. 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She is a leader in the field of applying novel MS scan types, such as data-independent acquisitions (DIA) and parallel reaction monitoring (PRM), and corresponding data processing. Dr. Schilling oversees all proteomics projects and coordinates all collaborations. BSchilling@buckinstitute.org Prasanna Ashok Kumaar, PhD . Scientist Dr. Ashok Kumaar graduated as a Topper with Masters in Biochemistry & Biotechnology from Annamalai University, India. She secured a competitive 5-year National Research Fellowship for pursing her PhD at Anna University, India. Her research focused on developing analytical methods and engineering yeast strains for production of therapeutic proteins and enzymes. Before joining the Buck, she worked as a Research Fellow at Washington State University developing mass spectrometry methods to quantify small molecule drugs and studying interactions between DNA repair and chaperone proteins. 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She is a leader in the field of applying novel MS scan types, such as data-independent acquisitions (DIA) and parallel reaction monitoring (PRM), and corresponding data processing. Dr. Schilling oversees all proteomics projects and coordinates all collaborations."},{"type":"p","text":"BSchilling@buckinstitute.org"},{"type":"p","text":"Dr. Ashok Kumaar graduated as a Topper with Masters in Biochemistry & Biotechnology from Annamalai University, India. She secured a competitive 5-year National Research Fellowship for pursing her PhD at Anna University, India. Her research focused on developing analytical methods and engineering yeast strains for production of therapeutic proteins and enzymes. Before joining the Buck, she worked as a Research Fellow at Washington State University developing mass spectrometry methods to quantify small molecule drugs and studying interactions between DNA repair and chaperone proteins. 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Epub 2020 Mar 26."},{"type":"h4","text":"CORE TECHNOLOGIES"},{"type":"h3","text":"Technological innovation in the service of scientific advancement"},{"type":"p","text":"Our cutting-edge technologies support the Institute’s goals and put the newest capabilities in the hands of our scientists."},{"type":"p","text":"Keep up with our research. 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Based on the sample type, we employ different sample preparation and sampling methods such as derivatization, and headspace analysis. Nuclear Magnetic Resonance (NMR) spectroscopy: Multiple aspects of NMR, including 1H, 13C, and two-dimensional studies such as Correlation spectroscopy (COSY), exchange spectroscopy (EXSY), Nuclear Overhauser effect spectroscopy (NOESY) and total correlation spectroscopy (TOCSY), and heteronuclear correlation experiments, such as HSQC, HMQC, and HMBC. Perform expanded quantitative metabolic analysis on wide range of samples including cells extracts/cell secretions (media), human and animal tissues and biopsy extracts, body fluids (including blood, plasma, serum, urine, cerebral/pancreatic/prostatic fluids, etc.)."},{"type":"h4","text":"Metabolomics Study Types:"},{"type":"p","text":"Targeted metabolomics – This workflow aims to provide quantitative estimates for a defined group of biochemically annotated metabolites and allow for the evaluation of specific biochemical hypotheses. Triple quadrupole mass spectrometry (QqQ) and NMR-based assays are most common for targeted analysis. Untargeted metabolomics – These studies are characterized by the simultaneous assessment (usually semi-quantitative) for all observable metabolites from a biological sample. Untargeted workflows thus provide a global overview, based on which specific hypotheses may be generated. Usually, a high-resolution mass spectrometer or HMRS (QTOF, QqTOF, Orbitrap, etc.) is common for untargeted analysis. Further GC-MS can be used to assess phytohormones by converting into their more volatile, thermally stable derivatives. Lipidomics – A branch of metabolomics specifically focused on the analysis and profiling of lipids. Lipidomics workflows can be conducted either in a targeted or an untargeted fashion. There are specific considerations when dealing with lipids around separation and detection of individual lipid moieties or classes e.g., isobaric nature of many lipids, wide polarity ranges from polar (phospholipids) to highly non-polar (long-chained triglycerides). Depending on the nature of the study, GC-MS/FID (e.g., FAME analysis), HRMS with ion mobility (untargeted lipidomics with separation of phospholipids), NMR or TLC (lipid classes) may be employed. Metabolomic flux analysis – Most metabolomics studies described above assume a static biochemical profile, and generally offer a single-timepoint data for biological samples. Metabolic flux analysis is employed to study metabolic fluxes, i.e., how metabolite levels change within a specific network is changing or interconverting over time. Metabolic flux analyses offer powerful insights into the dynamic nature of an organismal function. Depending on the study, the metabolite network in question, HRMS or GC-MS may be used."},{"type":"p","text":"Our experienced team of analytical scientists can recommend the best testing and analysis procedure for your needs. If you have any questions or specific requirements, please don’t hesitate to contact us."},{"type":"h2","text":"Request for Proposal"},{"type":"h3","text":"Let us be a part of your success story."},{"type":"p","text":"Do you have questions regarding a potential project? Or would you like to learn more about our services? 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She joined OWL Metabolomics in 2007 as a Chromatography and Mass Spectrometry Specialist, and currently serves as the Services Manager and Head of the Data Processing Department. In her role, she trains Data Processing Specialists and provides technical support for the company’s R&D."},{"type":"p","text":"Dr. Alonso scientific career has been focused on processing and interpretation of mass spectrometry-based metabolomic data, dedicated to the search for non-invasive biomarkers for liver diseases diagnosis and drug effect in NASH clinical trials. She has contributed to over 70 scientific publications in high impact journals."},{"type":"p","text":"(Researcher unique identifier: https://orcid.org/0000-0002-2019-678X)."},{"type":"h4","text":"Cristina Alonso, PhD"},{"type":"h4","text":"Ibon Martinez Arranz"},{"type":"p","text":"Ibon Martínez-Arranz, with a BSc degree in Mathematics, an MSc in Applied Statistical Techniques, and an MSc in Mathematical Modeling, joined OWL Metabolomics in 2010. Since 2017, he has been the Data Science Manager at OWL Metabolomics, overseeing prediction and statistical computing management. His team supports metabolomic services, data handling, and research and development projects. Currently, Martínez-Arranz is finalizing his doctoral thesis on the application of genetic algorithms for the selection of NAFLD subtypes."},{"type":"p","text":"(Researcher unique identifier: https://orcid.org/0000-0001-9483-8426)."},{"type":"h4","text":"Ibon Martinez Arranz"},{"type":"h4","text":"Miguel Campo"},{"type":"p","text":"Miguel Campo has a Bachelor’s degree in Pharmacy from the Madrid Complutense University (UCM) and a Master’s degree in Sales and Marketing Management in Pharmaceutical and Related Industries. Miguel has more than 23 years of experience as a Business Development Manager in the pharmaceutical industry, in different CROs. His experience spans across multiple therapeutic areas, including Oncology, Respiratory, Cardiovascular, Haematology, Vaccines and Neurology. Miguel has joined OWL Metabolomics in 2023 as a Business Development Manager."},{"type":"h4","text":"Miguel Campo"},{"type":"h4","text":"Rebeca Mayo, PhD"},{"type":"p","text":"Rebeca Mayo received her BSc degree in Chemistry from the University of Valladolid, where she also completed her PhD in Analytical Chemistry. In 2009 she joined OWL Metabolomics as a Chromatography and Mass Spectrometry Specialist in the Metabolomics Department. In 2012 she became part of the Management Team as Laboratory and Metabolomics Platform Manager. Since 2015, she has been the Head of Products Area, being actively involved in developing the in vitro diagnostic medical devices developed by OWL Metabolomics and their compliance with regulations."},{"type":"p","text":"Currently, Dr. Mayo is the Operations Manager, overseeing lab operations, R&D activities, and technology transfer processes. As one of the principal scientists at OWL Metabolomics, she is co-author of more than 20 scientific publications."},{"type":"p","text":"(Researcher unique identifier: https://orcid.org/0000-0001-9733-2121)."},{"type":"h4","text":"Rebeca Mayo, PhD"},{"type":"h4","text":"Toni Felís Soto"},{"type":"p","text":"Toni Felís Soto, Bachelor of Business Administration graduate from the Universitat Autònoma de Barcelona and an Executive Masters in Finance from the ESADE Business & Law School, started his professional journey as an auditor at PricewaterhouseCoopers. In 2008, he joined Laboratorios Rubió, leading the Treasury, Accounting, and Legal departments for fourteen years. His comprehensive skillset has fostered an in-depth understanding of the pharmaceutical industry, enhancing his customer-oriented approach. Currently, he serves as the Business Unit Manager at OWL Metabolomics, leading the team of people that make up the organization."},{"type":"h4","text":"Toni Felís Soto"},{"type":"h3","text":"SAB (Scientific Advisory BoARD)"},{"type":"h4","text":"Arun Sanyal, MD"},{"type":"p","text":"Dr. Arun J. Sanyal, Professor of Medicine and Director of the VCU Stravitz-Sanyal Institute for Liver Disease and Metabolic Health, currently serves as the Interim-Chair of the Division of Gastroenterology, Hepatology, and Nutrition at VCU/VCUHealth. His roles also include chairing the NIH NASH Clinical Research Network, the NIMBLE consortium, and the Liver Forum for NASH and fibrosis. His research primarily focuses on NAFLD and NASH, as well as complications of cirrhosis and end-stage liver disease."},{"type":"p","text":"With continuous NIH funding since 1995, Dr. Sanyal has contributed significantly to the field with over 350 peer-reviewed publications. He has held key national and global positions, including Chair of the Hepatobiliary Pathophysiology Study Section of the NIH. His outstanding contributions have earned him prestigious awards such as the Distinguished Mentorship Award from the American Gastroenterological Association and the Distinguished Achievement Award from the AASLD. Currently, he is involved in numerous clinical trials, leading several phase 2B and 3 trials for NASH and complications of end-stage liver disease."},{"type":"p","text":"https://intmed.vcu.edu/divisions/gastro/chair/"},{"type":"h4","text":"Arun Sanyal, MD"},{"type":"h4","text":"Dina Ferreira"},{"type":"p","text":"Dina Ferreira has a Bachelor’s and Master’s Degree in Pharmacy from the Faculdade de Farmácia da Universidade de Lisboa, a Postgraduate Degree in Laboratory Management and Auditor Training, and is coursing a PDD, Director Development Program Business Administration and Management at IESE. Currently, she is the Chief Scientific Officer and a member of the board of directors at Laboratorios Rubió. She has robust knowledge in the pharmaceutical sector acquired over more than 17 years, which has given her great expertise in driving innovation through leadership roles and scientific research. In her current role at OWL Metabolomics, Dina’s comprehensive background will contribute to aligning the company’s R&D efforts with those of Laboratorios Rubió."},{"type":"h4","text":"Dina Ferreira"},{"type":"h4","text":"Jesús Bañales, PhD"},{"type":"p","text":"Dr. Jesús Bañales is an Ikerbasque Research Professor and the Head of the Hepatic Diseases Group at the Biodonostia Health Research Institute – Donostia University Hospital, in San Sebastián. In addition, he is a Professor of Biochemistry at the University of Navarra (Pamplona), as well as an Associate Professor of Medicine/Sciences at Mayo Clinic (Rochester, USA) and the Universidad Área Andina (Bogotá, Colombia)."},{"type":"p","text":"His Hepatic Diseases Research Group consists of 25 multidisciplinary researchers focused on studying the molecular mechanisms involved in liver pathophysiology and the search for new diagnostic and therapeutic strategies."},{"type":"p","text":"Prof. Bañales is the author of more than 200 scientific publications in high-impact journals and has led more than 50 competitive national and international research projects. He is a member of the Editorial Board of the scientific journals Hepatology, Journal of Hepatology (Associate Editor) and Nature Reviews Gastroenterology & Hepatology. He has been recognized with various international research awards, such as the EASL Emerging Leader Award 2018, UEG Rising Star Award 2018, and “SER Navarra Researcher Award” 2020."},{"type":"p","text":" "},{"type":"h4","text":"Jesús Bañales, PhD"},{"type":"h4","text":"José M Mato, PhD"},{"type":"p","text":"José M. Mato, completed his education at the Complutense University of Madrid and the University of Leiden. He conducted his research in the Netherlands, Switzerland, United States, and Spain before being appointed as Research Professor at the Spanish Council for Scientific Research (CSIC) in 1986. From 1992 to 1996, he was president of CSIC. In 2004, he received the National Prize for Research in Medicine in recognition of his contributions to the field of metabolism and liver disease."},{"type":"p","text":"He is the founder and current general director of CIC bioGUNE and CIC biomaGUNE, both located in the Basque Country, Spain. He also played a pivotal role in the establishment of OWL Metabolomics, which since 2023 has been renamed to Rubió Metabolomics."},{"type":"h4","text":"José M Mato, PhD"},{"type":"h2","text":"Certifications"},{"type":"p","text":"We take great pride in the extensive recognition and certification from numerous health and governmental institutions we have received over the years. These certifications are a proof of our commitment to quality, innovation, and excellence in the field of metabolic sciences."},{"type":"h2","text":"Latest news"}],"loadingTime":2.2377772331237793,"lastModifiedAt":"2023-06-20T17:59:42.000Z","metaData":{"title":"Company - OWL Metabolomics","description":"OWL Metabolomics - Leading Metabolomics Company Innovating in Metabolite Profiling.","tags":[],"image":{"internalName":"company.jpg","name":"company.jpg","url":"https://owlmetabolomics.com/wp-content/uploads/2023/06/company.jpg"}},"classification":{"label":"DESCRIPTION","isVerified":true}}},{"score":6698.4185,"highlights":[{"location":"descriptionPage.metaDescription","snippets":["Unlock metabolomics possibilities with OWL Metabolomics advanced analysis services."]},{"location":"descriptionPage.h2","snippets":["Why OWL Metabolomics"]},{"location":"descriptionPage.metaTitle","snippets":["OWL Metabolomics - Insight into metabolomics"]}],"page":{"_id":"649d9a43f22b93cb5026c22e","url":{"entry":"https://owlmetabolomics.com/","target":"https://owlmetabolomics.com/"},"content":[{"type":"p","text":"Why Metabolomics Company Services Diagnostic tests Resources News Contact"},{"type":"p","text":"Why Metabolomics Company Services Diagnostic tests Resources News Contact"},{"type":"p","text":"Why Metabolomics Company Services Diagnostic tests Resources News Contact"},{"type":"h1","text":"Insights into metabolism"},{"type":"p","text":"Our metabolomics analysis services can help you solve complex metabolic pathways, leading to significant breakthroughs in your project through biological research and molecular biology. We work towards making knowledge actionable for you through metabolomics."},{"type":"h2","text":"About us"},{"type":"p","text":"OWL Metabolomics is a supply partner in the world of metabolomic analysis. Our commitment is guiding you from samples to profound insights, delivering biological sense out of complex data with our comprehensive reports and powerful interpretation tools. We are more than just a service provider; we will be your research allies. With our specialized expertise in metabolite profiling, we will support and accelerate your research journey."},{"type":"h2","text":"Services"},{"type":"p","text":"Our services feature specific UHPLC-MS analytical platforms, designed to adapt to your requirements and provide a wide view of the metabolome. Our metabolite coverage spans over 1300 compounds, including a diverse range of classes with varying physicochemical properties and concentration ranges. We can deliver broad coverage of lipids, amino acids, bile acids, and metabolites from the central carbon metabolic pathways. We evaluate proposals individually and can offer custom method development. Detailed data analysis, including correlation studies and predictive algorithms, is available upon request."},{"type":"h3","text":"Lipidomics-Platform 1"},{"type":"p","text":"Lipids play essential roles in biological systems, such as forming cell membranes, providing a hydrophobic medium for membrane proteins, and participating in signal transduction pathways. This platform utilizes methanol extraction and the analysis is performed by UHPLC coupled to a Time-of-Flight (ToF) mass spectrometer, allowing the analysis of the following lipid species:"},{"type":"p","text":"⦁ Fatty acyls: non esterified fatty acids, oxidised fatty acids, N-acyl ethanolamines and acylcarnitines. ⦁ Sterol lipids: bile acids and steroids. ⦁ Glycerophospholipids (lyso-forms): lysophosphatidylethanolamines, lysophosphatidylinositols, lysophosphatidylglycerols and lysophosphatidylcholines, including ether-linked species. ⦁ Free sphingoid bases."},{"type":"h3","text":"Lipidomics-Platform 1"},{"type":"p","text":"Fatty acyls: non esterified fatty acids, oxidised fatty acids, N-acyl ethanolamines and acylcarnitines."},{"type":"p","text":"Sterol lipids: bile acids and steroids."},{"type":"p","text":"Glycerophospholipids (lyso-forms): lysophosphatidylethanolamines, lysophosphatidylinositols, lysophosphatidylglycerols and lysophosphatidylcholines, including ether-linked species."},{"type":"p","text":"Free sphingoid bases."},{"type":"h3","text":"Lipidomics – Platform 2"},{"type":"p","text":"Like Platform 1, this platform focuses on lipid analysis, employing chloroform/methanol extraction and the analysis is performed by UHPLC coupled to a Time-of-Flight (ToF) mass spectometer. This platform covers:"},{"type":"p","text":"⦁ Fatty acyls: primary fatty amides. ⦁ Sterol lipids: Cholesterol esters, cholesterol and cholesteryl sulfate. ⦁ Sphingolipids: ceramides, monohexosylceramides and sphingomyelins. ⦁ Glycerolipids: monoacylglycerols, diacylglycerols and triacylglycerols. ⦁ Glycerophospholipids: phosphatidylethanolamines, phosphatidylinositols, and phosphatidylcholines, including ether-linked species."},{"type":"h3","text":"Lipidomics – Platform 2"},{"type":"p","text":"Fatty acyls: primary fatty amides."},{"type":"p","text":"Sterol lipids: Cholesterol esters, cholesterol and cholesteryl sulfate."},{"type":"p","text":"Sphingolipids: ceramides, monohexosylceramides and sphingomyelins."},{"type":"p","text":"Glycerolipids: monoacylglycerols, diacylglycerols and triacylglycerols."},{"type":"p","text":"Glycerophospholipids: phosphatidylethanolamines, phosphatidylinositols, and phosphatidylcholines, including ether-linked species."},{"type":"h3","text":"Amino acids – Platform 3"},{"type":"p","text":"This platform analyses amino acids, the building blocks of proteins and metabolic intermediates. Using a derivatization method on methanol extracts it detects:"},{"type":"p","text":"⦁ Amino acids. ⦁ Di- and tripeptides. ⦁ Amino acids derivatives."},{"type":"h3","text":"Amino acids – Platform 3"},{"type":"p","text":"Amino acids."},{"type":"p","text":"Di- and tripeptides."},{"type":"p","text":"Amino acids derivatives."},{"type":"h2","text":"Why OWL Metabolomics"},{"type":"p","text":"Metabolomics is fast becoming a promising leading field in the practice of precision medicine. The close association between metabolites and phenotype can provide physicians and researchers a powerful tool to obtain valuable, real-time information on the pathophysiological condition of an individual. Among other promising fields of study, metabolomics has proven useful to enable precise advancements in disease identification, characterization of disturbances, exploration of therapeutic targets, and discovery of biomarkers for diagnosis and treatment monitoring. Within metabolomics, lipidomics is a crucial field for identifying disease-specific biomarkers and monitoring drug therapies. Through its focus on the diverse roles of lipids, lipidomics plays a pivotal role in disease diagnosis and prognosis."},{"type":"h3","text":"Our Analytical Platforms"},{"type":"p","text":"OWL Metabolomics has optimized complete and highly productive metabolomic platforms. Our services include specific UHPLC-MS analytical platforms, tailored to your unique experimental needs and design."},{"type":"p","text":"Metabolomic services"},{"type":"h3","text":"The Expertise of Our Team"},{"type":"p","text":"The strength of OWL Metabolomics lies in our multidisciplinary Scientific Team. With a fusion of scientific expertise, open communication and trust, our team creates enduring connections. We offer scientific guidance from experts in the field, and effective counsel for optimal experimental design from sample collection to statistical discussion."},{"type":"p","text":"Meet the Team"},{"type":"h3","text":"Above and Beyond the Bare Essentials"},{"type":"p","text":"OWL Metabolomics is more than just a service provider. According to our clients, our metabolomics specialists go above and beyond the essentials to make your experience fulfilling. We provide added value to your research by simplifying the interpretation of complex data, helping you to turn raw information into actionable metabolic insights."},{"type":"p","text":"Resources"},{"type":"h2","text":"How we work"},{"type":"p","text":"At OWL, we are committed to delivering top-quality services for cutting-edge research. Our approach involves strict control over analytical procedures and the utilization of state-of-the-art facilities. We have a professional team of experts in the field ready to accommodate your needs. Here’s an overview of how we work:"},{"type":"h3","text":"1. Bioanalysis procedure: Metabolite extraction and UHPLC/MS injection:"},{"type":"p","text":"Our qualified team of bioanalytical chemists gets in contact with you to discuss project details and provide technical guidance. We help design optimal experiments, including sample collection, preparation, analysis, and data processing, aiming for high-quality, fast, and cost-efficient results."},{"type":"h3","text":"2. Metabolite Extraction and LC/MS Analysis:"},{"type":"p","text":"Sample prep is crucial in metabolomics, impacting metabolome coverage. We use specific methods based on the analysis requested, tailored to the sample type and metabolome portion of interest (e.g., lipids, amino acids). Our platforms include liquid chromatography coupled with mass spectrometers (UPLC-MS), that offer selective and sensitive analyses for metabolite identification. Samples are analyzed in positive/negative ESI modes, scanning from m/z 50-1200 on a reverse-phase column chosen based on the application. OWL counts with both high- and low-resolution mass spectrometers that are used according to the analysis requirements."},{"type":"h3","text":"3. Data Analysis:"},{"type":"p","text":"Data handling is a challenging and critical step in metabolomics, requiring expertise in bioinformatics, statistics, and specialized software. At OWL, we utilize powerful informatics and statistical applications to manage metabolomics datasets. Our analytical platforms are supported by state-of-the-art software and visualization tools, enabling transformation of complex data into informative charts and graphs. We employ chemometric tools like PCA, PLS-DA, OPLS, and univariate statistical analysis."},{"type":"h3","text":"4. Report Writing:"},{"type":"p","text":"Our results package includes a detailed report of experimental methods, including a description of the results obtained from the data analysis and interpretation of these results. . We also provide the obtained metabolomics data set."},{"type":"h2","text":"Track Record"},{"type":"p","text":"Since 2006 we have established a strong track record in the field of metabolomics. Throughout our journey, we have successfully completed more than 350 service projects. Through these years we have led and been involved in a great number of R&D projects in a continuous dedication to advance scientific knowledge, contributing to the monitoring and diagnosis of human and animal health. Our work is endorsed by a great number of peer-reviewed scientific articles published."},{"type":"h2","text":"Certifications"},{"type":"p","text":"We take great pride in the extensive recognition and certification from numerous health and governmental institutions we have received over the years. 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This platform covers:"},{"type":"p","text":"⦁ Free bile acids ⦁ Tauroconjugated bile acids ⦁ Glycoconjugated bile acids"},{"type":"h3","text":"Bile acids – Platform 5"},{"type":"p","text":"Free bile acids"},{"type":"p","text":"Tauroconjugated bile acids"},{"type":"p","text":"Glycoconjugated bile acids"},{"type":"h3","text":"Oxidized fatty acids – Platform 6"},{"type":"p","text":"Focusing on lipophilic signaling molecules derived from the oxidation of polyunsaturated fatty acids, this platform analyzes"},{"type":"p","text":"⦁ Oxidized fatty acids derived from omega-6 fatty acids (arachidonic acid, linoleic acid, dihomo-γ-linoleic acid) ⦁ Oxidized fatty acids derived from omega-3 fatty acids (α-linoleic acid, docosahexaenoic acid, eicosapentaenoic acid)"},{"type":"h3","text":"Oxidized fatty acids – Platform 6"},{"type":"p","text":"Oxidized fatty acids derived from omega-6 fatty acids (arachidonic acid, linoleic acid, dihomo-γ-linoleic acid)"},{"type":"p","text":"Oxidized fatty acids derived from omega-3 fatty acids (α-linoleic acid, docosahexaenoic acid, eicosapentaenoic acid)"},{"type":"h3","text":"Additional tailor-made analyses"},{"type":"h3","text":"Additional tailor-made analyses"},{"type":"p","text":"We provide customized analysis proposals for other metabolites or quantifications on a case-by-case basis. Extensive data analysis, including correlation studies and predictive algorithms, can also be performed upon request."},{"type":"p","text":"Each platform also includes unidentified analytes that contribute significantly to metabolic phenotypes. Our continual review and utilization of new MS/MS and complementary analytical data ensure up-to-date information on potential metabolite identifications."},{"type":"h2","text":"DATA SCIENCE"},{"type":"p","text":"OWL Metabolomics stands at the forefront of comprehensive data-driven insights and rigorous analysis in metabolic profiles. As we know that data is your greatest asset, we bring together a team of skilled data scientists who collaborate closely with researchers. Our work pursues empowering clients in harnessing the full potential of their data and gaining profound insights into metabolic profiles."},{"type":"p","text":"We leverage innovative data science techniques to identify significant biomarkers, perform comprehensive multivariate analyses, model intricate metabolic pathways, and conduct robust data integration. By tailoring our advanced and rigorous data analysis methods to our clients specific metabolomic needs, we empower them to drive research and enhance personalized medicine through impactful data-driven discoveries."},{"type":"h2","text":"Our Key Data Science Services in Metabolomics"},{"type":"h3","text":"Exploratory Data Analysis"},{"type":"p","text":"With meticulous planning and design of experiments, we aim to analyze the data obtained to test your hypothesis with appropriate levels of statistical power and sensitivity."},{"type":"h3","text":"Data Preparation"},{"type":"p","text":"We understand that tidy data is the key for high-quality analysis. 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The name oloBion came from holobiont which is the ensemble of a plant or human with its microbiome. You directly provide OloBion SL with most of the data we collect. OloBion SL may also receive your data indirectly from the following sources:. OloBion SL collects your data so that we can:. When OloBion SL processes your order, it may send your data to, and also use the resulting information from, credit reference agencies to prevent fraudulent purchases. OloBion SL securely stores your data at our server located in our main lab in the Parc Scientific of Barcelona. 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The interaction and communication at the molecular level between host and symbiont is the very basis of life."},{"type":"h2","text":"How Can we help?"},{"type":"h3","text":"Biotech"},{"type":"p","text":"Revealing insight into microbial fermentations Characterize natural product in microbial culture Linking microbiome to metabolome of a host"},{"type":"h3","text":"Agro-Food"},{"type":"p","text":"Revealing new insight for varieties improvement Understanding the mode of biostimulants, plant protection or fertilizer in plants Nutraceutical value of food"},{"type":"h3","text":"Cosmetics"},{"type":"p","text":"Revealing insight on skin lipidome Understanding the mode of active ingredient on skin cells Characterize natural products in plant/algae extracts"},{"type":"h3","text":"Pharma"},{"type":"p","text":"Revealing insights into the drug mode of action Development of personalised medicine Discovery of new biomarkers for diagnostics"},{"type":"h3","text":"Do you agree?"},{"type":"h3","text":"Oliver Fiehn, UC Davis"},{"type":"h3","text":"Ionomic"},{"type":"p","text":"The importance of Elements"},{"type":"h3","text":"Metabolomics"},{"type":"p","text":"The biological relevance of small molecules"},{"type":"h3","text":"Lipidomics"},{"type":"p","text":"The Greatest Wall"},{"type":"h3","text":"Volatolomics"},{"type":"p","text":"The Scent of Life"},{"type":"h3","text":"Caroteomics"},{"type":"p","text":"The Protection against the Cosmos"},{"type":"h3","text":"oloMAP®"},{"type":"p","text":"Proprietary Artificial Intelligence driven workflow for the interpretation of OMICS data"},{"type":"h2","text":"PRICES"},{"type":"h3","text":"PRIMARY METABOLISM"},{"type":"p","text":"Minimum: 10 samples Delivery time 4 weeks Untarget Metabolomics GC-MS platform Extended report: Optional +500 € Fast delivery: Optional 2 weeks + 20%  "},{"type":"h3","text":"SECONDARY METABOLISM"},{"type":"p","text":"Minimum: 10 samples Delivery time 4 weeks​ Untarget metabolomics LC-MS/MS platform Extended report: Optional +500 € Fast delivery: Optional 2 weeks + 20%  "},{"type":"h3","text":"LIPIDOMICS"},{"type":"p","text":"Minimum: 10 samples Delivery time 5 weeks Untarget Lipidomics Quantitative results LC-MS/MS platform with Ion Mobility Extended report: Optional +750 € Fast delivery: Optional 3 weeks + 20%"},{"type":"h2","text":"Our Workflow - A 5 step process"},{"type":"h4","text":"Gain Insight into your product or technology"},{"type":"h2","text":"drop us a line and keep in touch"},{"type":"h3","text":"Keep In Touch"},{"type":"p","text":"© 2023 oloBion, SL"},{"type":"h3","text":"Ionomic"},{"type":"p","text":"Ionomics refers to the quantitative measurement of the complete set of ions in a living organism and deals with the changes in ion production under varied external stimuli. Biochemical pathways elucidate the production of ions that play a crucial role in maintaining cell integrity, transportation of minerals, and act as cofactors for enzymes catalyzing important regulatory pathways. Thus, alteration in the production of ions in a process can lead to large changes in metabolic pathways. It is very important to analyze the ions simultaneously as the production of some ions influence the production of other ions."},{"type":"p","text":"Questions within physiology, ecology, evolution, and many other fields can be investigated using ionomics, often coupled with other omics sciences."},{"type":"h3","text":"Metabolomics"},{"type":"p","text":"Metabolites are the end products of cellular regulatory processes, and their levels can be regarded as the ultimate response of biological systems to genetic or environmental changes. The set of metabolites synthesized by a biological system constitute its ‘metabolome’."},{"type":"p","text":"We can identify two types of metabolism: primary and secondary."},{"type":"p","text":"A primary metabolite is a compound that is directly involved in normal growth, development, and reproduction. It usually performs a physiological function in the organism. For example, primary metabolites include amino acids, sugars, and organic acids."},{"type":"p","text":"Secondary metabolism (also called specialized metabolism) is a term for pathways and small molecule products of metabolism that are involved in ecological interactions, but are not absolutely required for the survival of the organism. Examples of secondary metabolites include: phenols, flavonoids, and alkaloids."},{"type":"h3","text":"Lipidomics"},{"type":"p","text":"Lipids are extremely diverse molecules. This diversity of lipids creates complex biological systems with lipids acting as key components of cellular membranes, signaling molecules, and energy-storage molecules and substrates."},{"type":"p","text":"While lipidomics falls under the umbrella of metabolomics, identifying the hundreds of cellular lipid species requires distinct methods. Exploring the lipidome is important to understand cosmetics, mode of action in human skin, plant-pathogen interaction, and mechanism of diseases."},{"type":"h3","text":"Volatolomics"},{"type":"p","text":"Volatolomics is a branch of chemistry that studies volatile organic compounds (VOCs) emitted by a biological system, under specific experimental conditions."},{"type":"p","text":"The volatilome is a part of the “microbial cloud” that surrounds all organisms and consists of aromatic compounds, alkyls, ketones, alcohols and esters."},{"type":"h3","text":"Caroteomics"},{"type":"p","text":"Carotenoids are organic pigments that are produced by plants and algae, as well as by several bacteria and fungi."},{"type":"p","text":"There are over 1,100 known carotenoids that can be categorized into two main classes: xanthophylls (containing oxygen) and carotenes (which are purely hydrocarbons and contain no oxygen)."},{"type":"p","text":"Carotenoids serve two key roles in plants and algae: they absorb light energy for use in photosynthesis and they provide photoprotection via non-photochemical quenching. Carotenoids that contain unsubstituted beta-ionone rings (including beta-carotene, alpha-carotene, beta-cryptoxanthin, and gamma-carotene) have vitamin A activity, meaning that they can be converted to retinol. In the eye, lutein, meso-zeaxanthin, and zeaxanthin are present as macular pigments whose importance in visual function."},{"type":"h3","text":"oloMAP®"},{"type":"p","text":"oloMAP is our proprietary AI data processing and analysis pipeline to turn raw data into insights.  We apply cutting-edge approaches to compound identification, chemical enrichment analysis, and metabolic pathway analysis to deliver an in-depth view of the chemical makeup of the samples alongside a high-level perspective of the chemical and biological mechanisms being exhibited.  oloMAP is a self-improving workflow, continuously building upon its metabolomics chemical and spectral libraries so that we can apply today’s discoveries the next study tomorrow."},{"type":"p","text":"This privacy policy will explain how our organization uses the personal data we collect from you when you use our website or contact form."},{"type":"p","text":"Topics:"},{"type":"h3","text":"What data do we collect?"},{"type":"p","text":"OloBion SL collects the following data:"},{"type":"p","text":"Personal identification information (Name, email address, phone number, sample location, etc.)"},{"type":"h3","text":"How do we collect your data?"},{"type":"p","text":"You directly provide OloBion SL with most of the data we collect. We collect data and process data when you:"},{"type":"p","text":"Register online or place an order for any of our products orVoluntarily complete a customer survey or provide feedback on any of our message boards or viaUse or view our website via your browser’sRegister in our contact formRegister information in our oloMAP software for sample shipment."},{"type":"p","text":"OloBion SL may also receive your data indirectly from the following sources:"},{"type":"p","text":"Our costumersMailchimpGoogle AnalyticsGoogle search console"},{"type":"h3","text":"How will we use your data:"},{"type":"p","text":"OloBion SL collects your data so that we can:"},{"type":"p","text":"Process your order, manage yourEmail you with special offers on other products and services we think you mightSend your reportsPhone text messages with special offers on other products and services we think you might"},{"type":"p","text":"lf you agree, OloBion SL will share your data with our partner companies so that they may offer you their products and services."},{"type":"p","text":"Atens, Agrotecnologias Naturales SLHello-Nature group"},{"type":"p","text":"When OloBion SL processes your order, it may send your data to, and also use the resulting information from, credit reference agencies to prevent fraudulent purchases."},{"type":"h3","text":"How do we store your data?"},{"type":"p","text":"OloBion SL securely stores your data at our server located in our main lab in the Parc Scientific of Barcelona. Also is backup stored into our Microsoft onedrive subscription. All the data is protected by double authentication and only our personal have access."},{"type":"p","text":"OloBion SL will keep your personal data for 20 years. Once this time period has expired, we will delete your data."},{"type":"h3","text":"Marketing"},{"type":"p","text":"OloBion SL would like to send you information about products and services of ours that we think you might like, as well as those of our partner companies."},{"type":"p","text":"Atens, Agrotecnologias Naturales SLHello-Nature group"},{"type":"p","text":"lf you have agreed to receive marketing, you may always opt out at a later date."},{"type":"p","text":"You have the right at any time to stop OloBion SL from contacting you for marketing purposes or giving your data to other members of the OloBion SL Group."},{"type":"p","text":"lf you no longer wish to be contacted for marketing purposes, please click here."},{"type":"h3","text":"What are your data protection rights?"},{"type":"p","text":"OloBion SL would like to make sure you are fully aware of all of your data protection rights. Every user is entitled to the following:"},{"type":"p","text":"The right to access – You have the right to request OloBion SL for copies of your personal data. We may charge you a small fee for this service."},{"type":"p","text":"The right to rectification – You have the right to request that OloBion SL correct any information you believe is inaccurate. You also have the right to request OloBion SL to complete information you believe is incomplete."},{"type":"p","text":"The right to erasure – You have the right to request that OloBion SL erase your personal data, under certain conditions."},{"type":"p","text":"The right to restrict processing – You have the right to request that OloBion SL restrict the processing of your personal data, under certain conditions."},{"type":"p","text":"The right to object to processing – You have the right to object to OloBion SL’s processing of your personal data, under certain conditions."},{"type":"p","text":"The right to data portability – You have the right to request that OloBion SL transfer the data that we have collected to another organization, or directly to you, under certain conditions."},{"type":"p","text":"lf you make a request, we have one month to respond to you. lf you would like to exercise any of these rights, please contact us at our email:"},{"type":"p","text":"Call us at: +34 934 597 786"},{"type":"p","text":"Or write to us: info@olobion.ai"},{"type":"p","text":"Keeping you signed inUnderstanding how you use our websiteGoogle analyticsMarketing"},{"type":"h1","text":" "},{"type":"h1","text":" "},{"type":"h3","text":"Privacy policies of other websites"},{"type":"p","text":"The OloBion SL website contains links to other websites. Our privacy policy applies only to our website, so if you click on a link to another website, you should read their privacy policy."},{"type":"h1","text":" "},{"type":"h3","text":"Changes to our privacy policy"},{"type":"p","text":"OloBion SL keeps its privacy policy under regular review and places any updates on this web page. This privacy policy was last updated on 9 January 2019."},{"type":"h1","text":" "},{"type":"h3","text":"How to contact us"},{"type":"p","text":"lf you have any questions about OloBion SL’s privacy policy, the data we hold on you, or you would like to exercise one of your data protection rights, please do not hesitate to contact us."},{"type":"p","text":"Call us at: +34 934 597 786"},{"type":"p","text":"Or write to us: info@olobion.ai"},{"type":"h3","text":"How to contact the appropriate authority"},{"type":"p","text":"Users may contact the Catalan Data Protection Authority (Autoritat Catalana de Protecció de Dades, https://seu.apd.cat) to request further information or to lodge a complaint if, for example, they feel that their personal data rights have not been respected."},{"type":"h3","text":"Legal Warning"},{"type":"p","text":"LSSIYCE LEGAL INFORMATION"},{"type":"p","text":"In accordance with the obligations set forth in Law 34/2002, on services of the Information Society and electronic commerce (here in after LSSIYCE), oloBion SL declares that the domain olobion.ai is owned by oloBion SL , with CIF ESB01593243, and address at av. Dr. Maranon 8, Barcelona, Spain"},{"type":"p","text":"oloBion, SL cannot assume any responsibility derived from the incorrect, inappropriate or illegal use of the information appearing on its pages."},{"type":"p","text":"With the limits established in the law, oloBion, SL does not assume any responsibility derived from the lack of veracity, integrity, updating and accuracy of the data or information contained in its website pages. The contents and information included in the website pages of oloBion, SL are prepared by professionals duly qualified for the exercise of their profession. However, the contents and information do not bind the above, nor do they constitute opinions, advice or legal advice of any kind, since it is merely a service offered for information and information purposes."},{"type":"p","text":"The website pages of oloBion, SL may contain links to other pages from third parties. Therefore, it cannot assume responsibility for the content that may appear on third-party websites. The texts, images, sounds, animations, software and other content included in this website are the exclusive property of oloBion, SL or its licensors. Any act of transmission, distribution, assignment, reproduction, storage or total or partial public communication must have the express consent of oloBion, SL. PERSONAL DATA PROTECTION The Internet pages of oloBion, SL may contain links to other pages of third parties. Therefore, it cannot assume responsibility for the content that may appear on third-party pages. The texts, images, sounds, animations, software and other content included in this website are the exclusive property of oloBion, SL or its licensors. Any act of transmission, distribution, cession, reproduction, storage, or total or partial public communication must have the express consent of oloBion, SL. If you wish to exercise your rights of access, rectification, cancellation or opposition, you can go to: av. Dr. Maranon 8, Barcelona or send an email to info@olobion.ai."},{"type":"p","text":"INDUSTRIAL AND INTELLECTUAL PROPERTY"},{"type":"p","text":"This website is owned by oloBion, SL. The Intellectual Property rights and exploitation and reproduction rights of this website, its pages, screens, the information they contain, their appearance and design, as well as the links (“hyperlinks”) that are established from it to other websites of any subsidiary and/or dominated company of oloBion SL, are the exclusive property of it, unless expressly specified otherwise."},{"type":"p","text":"Any denomination, design and / or logo, as well as any product or service offered and reflected on this website, are trademarks duly registered by oloBion, SL, by its subsidiaries and / or dominated companies or by third parties. Any misuse of them by people other than their legitimate owner and without the express and unequivocal consent of the latter may be denounced and prosecuted through all existing legal means in the Spanish and / or Community Legal System."},{"type":"p","text":"The intellectual property rights and brands of third parties are conveniently highlighted and must be respected by everyone who accesses this page, not being the responsibility of oloBion, SL the use that THE USER may carry out in this regard, with the sole responsibility of His person. Only for personal and private use is it possible to download the contents, copy or print any page of this website. It is prohibited to reproduce, transmit, modify or suppress the information, content or warnings of this website without the prior written authorization of oloBion, SL."},{"type":"p","text":"oloBion, SL does not transfer ownership of its software to users. The user is the owner of the medium in which the software is recorded. oloBion, SL owns all industrial and intellectual property rights, including software. If the user transfers the software from this website to his terminal, he cannot dissect for study and decompile, translate the version of the original object code or its language into another code or language."},{"type":"p","text":" "}],"loadingTime":0.15800738334655762,"lastModifiedAt":null,"metaData":{"title":"oloBion – Metabolomics and Lipidomics Service Laboratory - OMICS LIFE LAB","description":"oloBion is a cutting edge OMICS laboratory located in the Barcelona Scientific Park. 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We have the ability to deliver personalised pregnancy risk assessment solutions by fitting biomarkers to specific patient characteristics."},{"type":"p","text":"Screening for Preeclampsia risk is the company's current priority."},{"type":"h3","text":"Our Senior Management Team"},{"type":"h3","text":"Dr. Ana Panigassi"},{"type":"p","text":"Head of Clinical Affairs and In-House Obstetrician"},{"type":"p","text":"Read More"},{"type":"h3","text":"Dr. Greg Fitzgibbon"},{"type":"p","text":"Clinical Laboratory Director"},{"type":"p","text":"Read More"},{"type":"h3","text":"Dr. Paloma Muñiz Ortea"},{"type":"p","text":"R&D Manager"},{"type":"p","text":"Read More"},{"type":"h3","text":"Elizabeth Berkelaar"},{"type":"p","text":"Office Manager/ Executive Assistant"},{"type":"p","text":"Read More"},{"type":"h3","text":"Dr. Robin Tuytten"},{"type":"p","text":"Chief Executive Officer"},{"type":"p","text":"Read More"},{"type":"h3","text":"Louise Kenny"},{"type":"p","text":"Principal Investigator"},{"type":"p","text":"Read More"},{"type":"h3","text":"Phil Baker"},{"type":"p","text":"Principal Investigator"},{"type":"p","text":"Read More"},{"type":"h3","text":"Diarmuid Cahalane"},{"type":"p","text":"Director"},{"type":"p","text":"Read More"},{"type":"h3","text":"Charles Garvey"},{"type":"p","text":"Executive Chairman"},{"type":"p","text":"Read More"},{"type":"h3","text":"Dr. Ana Panigassi"},{"type":"p","text":"Head of Clinical Affairs and In-House Obstetrician"},{"type":"p","text":"Ana specialises in Obstetrics and Gynaecology and Maternal-Fetal Medicine. She has several years of clinical experience as a consultant physician along with a strong academic background. She has tutored all levels of medical students and residents and is also a published author. Her most significant research was carried out with the First Trimester Screening Group at Unifesp (São Paulo, Brazil), of which she is one of the founding members. Ana moved to Ireland in 2015 and started a deep dive into Innovation in Healthcare helping teams to establish innovative start-ups."},{"type":"h3","text":"Dr. Greg Fitzgibbon"},{"type":"p","text":"Clinical Laboratory Director"},{"type":"p","text":"Greg is a Clinical Laboratory Director with New York State Department of Health Certificate of Qualification and provides the clinical expertise required for Metabolomic Diagnostics expanding business and product portfolio. Greg has previously been the COO and Clinical Affairs Director of multiple Molecular Diagnostic Companies. He has led operations teams in performing product development for In Vitro Diagnostic (IVD) products under ISO 13485 quality management systems with a focus on women's health and prenatal testing portfolios. Greg holds a Doctorate in Molecular Genetics, he is a HCPC registered Clinical Scientist and a Diplomate member of the Royal College of Pathologists. Greg has over 8 years management experience within the NHS. He has also had over 8 years involvement with the inception, growth and development of Biotechnology businesses including Syngenta, Gen-Probe, Hologic, Epistem, Elucigene Diagnostics, Yourgene Health, MyHealthChecked, on top of validating technologies for corporate giants including GSK and Government Institutions."},{"type":"h3","text":"Dr. Paloma Muñiz Ortea"},{"type":"p","text":"R&D Manager"},{"type":"p","text":"Paloma is trained as an analytical chemist and holds a PhD from the Cork Institute of Technology where she developed analytical methods for the detection of marine toxins using liquid chromatography- mass spectrometry. She previously worked in Fournier Laboratories Ireland (FLI, now Abbvie) where she worked as Development analyst and Senior Analytical Scientist at a later stage. During her time at NorthStar she worked as Product Quality Manager and was responsible for ensuring the overall quality of over 30 different products currently on the market under the NorthStar label and other several affiliated labels marketed in the USA and Canada. Paloma has an extensive knowledge in method development as well as in the regulated pharmaceutical manufacturing industry."},{"type":"h3","text":"Elizabeth Berkelaar"},{"type":"p","text":"Office Manager/ Executive Assistant"},{"type":"p","text":"Elizabeth's diverse experience facilitates efficient functioning of a range of office environments which she has gained over the years in various industries. Encompassing multi-operational roles, Elizabeth supports Administration, Finance, Quality, Human Resources and Health & Safety. She is a self motivated individual committed to meeting deadlines and targets with a high degree of precision and quality and adept at handling the demands of a fast-paced work environment."},{"type":"h3","text":"Dr. Robin Tuytten"},{"type":"p","text":"Chief Executive Officer"},{"type":"p","text":"Robin is a globally respected leader in the field of mass spectrometry and women’s health. Prior to his appointment as CEO Robin had been leading the Metabolomic Diagnostics R&D programs. Robin is trained as an analytical chemist and holds a PhD from the University of Antwerp where he developed methodologies for the mass spectrometric analyses of nucleosides and nucleotides. He joined Belgian biomarker company Pronota in 2006. Robin led Pronota’s Preeclampsia biomarker program until he joined Metabolomic Diagnostics. With more than 20 peer-reviewed scientific publications, co-inventorship on several technical and biomarker patent applications including protein biomarkers for PE, a solid track record in commercial biomarker development and a deep knowledge of the field of pregnancy diseases, Robin Tuytten is well positioned to lead the company’s current and future product development efforts."},{"type":"h3","text":"Louise Kenny"},{"type":"p","text":"Principal Investigator"},{"type":"p","text":"Professor Louise Kenny (MB ChB (hons), PhD, MRCOG) is Executive Pro Vice Chancellor, Faculty of Health & Life Sciences, University of Liverpool. Louise’s post-doctoral work mainly investigated the use of metabolomic technology in the development of a screening test for pre-eclampsia. This work attracted the Society for Gynaecological Investigation President’s Award and Plenary Presentation at the annual meeting in Los Angeles, 2005. In 2007, Louise was appointed as a Health Research Board Ireland Clinician Scientist. This 4 year award (of €1.6 million) is underpinning the Screening for Pregnancy Endpoints (SCOPE) Study- a prospective longitudinal case cohort of pregnancy outcome which will also contribute to the world’s largest global pregnancy biobank (see www.scopestudy.net). Louise’s work has resulted in >200 peer reviewed original papers, reviews and book chapters. She is the co-Editor of the 19th Edition of `Obstetrics by Ten Teachers’- the world’s leading undergraduate textbook in obstetrics and senior Editor of the forthcoming 20th editions of ‘Obstetrics and Gynaecology by Ten Teachers’. In addition, Louise is a reviewer for a wide range of international journals including the American Journal of Obstetrics and Gynecology, the British Journal of Obstetrics and Gynaecology, the British Medical Journal, Clinical Chemistry, the European Journal of Obstetrics and Gynaecology, the Journal of Perinatal Medicine and Reproductive Sciences and research funding bodies such as the Medical Research Council (UK), the Wellcome Trust, Action Research, the British Heart"},{"type":"h3","text":"Phil Baker"},{"type":"p","text":"Principal Investigator"},{"type":"p","text":"Professor Baker is Pro-Vice-Chancellor and Head of the College of Life Sciences, Dean of Medicine at University of Leicester. Prior to accepting the position in Leicester Professor Baker lived and worked in New Zealand where he served as Director of the National Research Centre for Growth and Development and held the position of Professor of Maternal & Fetal Health at the University of Auckland. Professor Baker also runs a dedicated pregnancy research centre based in Chongqing Medical University in Western China following his appointment as a National Distinguished Professor by the Chinese Government in 2013. Previously Professor Baker led the medical schools in both Manchester, UK and Alberta, Canada. He also established and then directed the Manchester NIHR Biomedical Research Centre. He has held visiting professorial appointments in Hong Kong, Toronto and Yale. In 2005 he was given the President’s Achievement Award of the Society of Gynecologic Investigation (The first time this award had been made outside North America). He was elected a Fellow of the Academy of Medical Sciences in 2008. He is a world authority in the aetiology and management of pre-eclampsia, having published over 300 scientific articles and 17 textbooks (including the leading UK undergraduate and postgraduate obstetric texts). He has been investigating screening tests for pre-eclampsia for over 20 years. He been awarded grants totaling over £20M for his own research portfolio, including an MRC program grant and a Wellcome Trust Translational award. He has led institutional research applications that have successfully accrued >£50M. Professor Baker was also the principal author of the position paper on “Health of Women and Children”, presented to The Science Academies of the G8 countries, and considered at the G8 Summit held in Huntsville, Ontario, in June 2010."},{"type":"h3","text":"Diarmuid Cahalane"},{"type":"p","text":"Director"},{"type":"p","text":"Diarmuid Cahalane has been consulting to the technology and life sciences sectors for over 20 years. He is recognised for his strengths in risk analysis, remediation, cost reduction and compliance. In 1997, he established his own regulatory consulting company, and went on to work with many of the leading life science companies, including Pfizer, Schering Plough, and Glaxo Smithkline. He maintains contact with the FDA at a high level and recently visited Washington DC to discuss innovation concepts with the FDA, Patient Advocacy Groups and others. He is an expert member of the Irish mirror committee of ISO:TC276 and is also a member of the Preeclampsia Biomarkers Consortium in the United States."},{"type":"h3","text":"Charles Garvey"},{"type":"p","text":"Executive Chairman"},{"type":"p","text":"Charles Garvey is a serial entrepreneur with extensive experience in growing Irish companies internationally. From 1990 to 2003 he was first COO and then CEO of Horizon Technology Group Plc. and took Horizon from a small privately held company to a major European multinational with significant global credentials. Charles took Horizon public on the London and Dublin stock exchange in 2000. Charles continued to work with Horizon right up to its sale to Avnet Corp in 2009. From 2006 to 2011 Charles was CEO of NitroSell Ltd., a SAAS based ecommerce platform, which has generated almost $1B in sales to date. Charles continues to serve as non-executive chairman of NitroSell. For the past six years, Charles has used his proven teambuilding and managerial skills to build a focused, motivated and successful team of life science professionals at Metabolomic Diagnostics. Charles has extensive experience at forging and managing partnerships with major multinational companies and in corporate finance and fundraising through angel investors, VCs, banks and public markets."},{"type":"h3","text":"Our Advisory Team"},{"type":"h4","text":"Prof Jim Roberts"},{"type":"h4","text":"Declan O’Mahoney"},{"type":"h4","text":"Frank Walsh"},{"type":"h4","text":"Bill Liao"},{"type":"h4","text":"Prof Jim Walsh"},{"type":"h3","text":"Investors & Partners"},{"type":"p","text":"The team at Metabolomic Diagnostics recognise the important contributions our investors and partners make. We welcome opportunities to work in collaboration with universities and private companies to accelerate the development of their technology. 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Therefore, it is necessary to simultaneously identify and quantify metabolites in plants to understand the dynamics of the metabolites, study fluxes in metabolic pathways and decipher the role of each metabolite in response to various stimuli."},{"type":"p","text":"Because of their highly dynamic in time and space and complexity of structures, it is a big challenge to separate and characterize up to 200,000 metabolites in plant kingdom of high diversity in biological sample matrices. The studies of the plant metabolomics is composed of analysis of a large number of chemical species with various physical properties, ranges from ionic inorganic compounds to biochemically derived hydrophilic compounds, organic and amino acids, and a series of hydrophobic lipid-related compounds. Although technology is moving forward, we are still lack of knowledge of the plant metabolome. Because of the immense diversity among plants, metabolomics has become a crucial analytical tool in the plant community. It is difficult for a single analytical technique to identify and quantify all the metabolites found in plants. Plant metabolomics has benefited from a large number of previous methodological approaches and bioanalytical knowledge for the characterization of many chemically diverse classes of metabolites. While generally applicable methods for metabolite extraction, fractionation and detection is implemented, it is still challenging to identify and quantify the metabolites."},{"type":"h2","text":"Detection Methods Of Plant Metabolomics"},{"type":"p","text":"The classical instrumentation useful for the identification and quantification of plant metabolomics includes MS, GC, HPLC, or HPLC-MS, GC-MS. The coupling of chromatographic methods such as GC or HPLC with MS can greatly increase coverage of metabolites, which will enhance the biological context by increasing the number of identified metabolites. As one of the widely used analytical techniques in plant metabolomics, GC-MS is utilized to qualitatively and quantitatively analyze a wide range of volatile and derivatized nonvolatile metabolites with high thermal stability. Compared to LC-MS and LC-NMR, GC-MS is of analytical reproducibility and lower costs. LC-MS has been increasingly used in these years for the untargeted large-scale analysis of plant metabolomics, the characterization of metabolites in response to stress and the identification of flavonoid glycoconjugates in roots. LC-MS is more labile compounds and for compounds hard to derivatize. Besides, because of its advantage of high resolution and high reliability, CE-MS is also used for profiling of amino acid in plant cell cultures, for profiling of metabolites in bacterial-infected orange leaves and for profiling of metabolites in Illicium anisatum. Other techniques used for plant metabolomics include FT-IR, NIR, and NMR."},{"type":"h2","text":"What Is Plant Untargeted Metabolomics"},{"type":"p","text":"Plant untargeted metabolomics analysis is the most classical and widely used approach in plant metabolomics. It focuses on studying small molecule metabolites in plants as research subjects, investigating the metabolic products of different species, genetic types, or ecological types of plants at different growth stages or before and after certain stimuli. Based on liquid chromatography-mass spectrometry (LC-MS), this unbiased method aims to detect as many small molecule metabolites as possible within plant samples, comparing and analyzing experimental and control groups. Differential metabolites are selected through statistical analysis, followed by metabolic pathway analysis to explore the relative relationship between metabolites and physiological or pathological changes."},{"type":"h2","text":"Workflow of Plant Untargeted Metabolomics"},{"type":"h2","text":"Our Plant Untargeted Metabolomics Service"},{"type":"p","text":"With the integration of separation, characterization, identification, and quantification systems, which exhibit robustness, reproducibility, and high sensitivity, Creative Proteomics offers reliable, rapid, and cost-effective plant untargeted metabolomics using LC-MS. Simultaneously, both primary and secondary metabolites in plant samples are qualitatively and quantitatively analyzed, and plant metabolomic information is extensively explored using statistical and bioinformatics methods."},{"type":"p","text":"CategoryQuantityRepresentative SubstancesAmino Acids100+Serine, Threonine, Tyrosine, Valine, Glutamine, Cysteine, etc.Vitamins30+Vitamin A, Vitamin B12, Vitamin C, Vitamin D2, Vitamin K1, etc.Organic Acids200+Salicylic Acid, Malic Acid, Gallic Acid, Citric Acid, Tartaric Acid, etc.Carbohydrates50+Lactose, Galactose, Sorbitol, Xylitol, Mannitol, Arabinose, etc.Lipids100+Linoleic Acid, Palmitic Acid, Linolenic Acid, Myristic Acid, Arachidonic Acid, etc.Nucleotides100+1-Methyladenosine, 5-Methylcytidine, Adenine, Cytosine, Guanine, etc.Phenols80+Danthron, Resveratrol, Emodin, Curcumin, Rhodiola Rosea Glycoside, etc.Phenolic Acids60+Caffeic Acid, Catechin, Benzoyl Shanzhiside Methyl Ester, Danshensu, etc.Flavonoids450+Baicalin, Isoflavones, Myricetin, Quercetin, Proanthocyanidin B1, etc.Alkaloids370+Berberine, Galanthamine, Reserpine, Betaine, Ricinine, Barbaloin, etc.Terpenes350+Astragaloside III, Ginsenoside, Betulin, Umbelliferone, Celosin, etc.Quinones30+Danhong Danshensu I, Diosmetin, Chrysophanol, Danshensu IIA, Quercetin, etc.Steroids60+Tomatidine, Dioscin, Digitalis Glycoside, Alliin, Levoalysine, etc.Phenethylamines150+Verbascoside, Scopolamine, Caffeoylquinic Acid, 1-Caffeoylquinic Acid, etc.Others400+Ganoderma Lucidum Triterpenoids, Podophyllotoxin, Rutin B, Acetylbenzene, Patchoulitones, etc.Total2500+"},{"type":"h2","text":"Data Analysis Contents"},{"type":"p","text":"Basic Data AnalysisAdvanced Data AnalysisData preprocessingPCA analysisPLS-DA analysisOPLS-DA analysisDifferential compound screeningDifferential compound identificationMetabolic pathway analysisMetabolic network analysisMulti-omics data correlation analysis (for studies with multiple omics data)"},{"type":"p","text":"Online Inquiry"},{"type":"p","text":"Please submit a detailed description of your project. We will provide you with a customized project plan to meet your research requests. You can also send emails directly to for inquiries."}],"loadingTime":0.5404036045074463,"lastModifiedAt":"2017-02-12T00:00:00.000Z","metaData":{"title":"Plant Untargeted Metabolomics - Creative Proteomics","description":"Creative Proteomics can provide sensitive and reliable Plant Untargeted Metabolomics Service for your biological samples.","tags":["plant untargeted metabolomics","plant metabolomics","plant metabolites","plant metabolome"],"image":null},"classification":{"label":"SERVICE","isVerified":true}}},{"score":7588.7383,"highlights":[{"location":"verifiedServicePage.h4","snippets":["Targeted Metabolomics"]},{"location":"verifiedServicePage.h3","snippets":["Metabolomics Service at Creative Proteomics"]},{"location":"verifiedServicePage.h1","snippets":["Metabolomics Service"]},{"location":"verifiedServicePage.metaTitle","snippets":["Metabolomics Service - Creative Proteomics"]}],"page":{"_id":"649e9e9c66edd9726ce9bb75","url":{"entry":"https://www.creative-proteomics.com/services/metabolomics-service.htm/","target":"https://www.creative-proteomics.com/services/metabolomics-service.htm/"},"content":[{"type":"p","text":"Services"},{"type":"p","text":"Home Services Metabolomics Service"},{"type":"h1","text":"Metabolomics Service"},{"type":"p","text":"Metabolomics refers to the systematic identification and quantification of the metabolome of a biological system at a specific point in time. And metabolome means the complete set of small-molecule chemicals found within a biological sample. In metabolomics, metabolites and their concentrations directly reflect underlying biochemical activity and state of cells or tissues. For metabolome profiling, mass spectrometry and NMR are the most commonly used techniques."},{"type":"h3","text":"Metabolomics Service at Creative Proteomics"},{"type":"p","text":"At Creative Proteomics, we can provide a wide range of metabolomics services from discovery to targeted analysis."},{"type":"h4","text":"Untargeted Metabolomics"},{"type":"h4","text":"Targeted Metabolomics"},{"type":"h4","text":"Xenobiotic Metabolites Analysis Service"},{"type":"h4","text":"Metabolic Flux Analysis(MFA)"},{"type":"h4","text":"Unknown Metabolites Identification"},{"type":"h4","text":"Untargeted Metabolomics"},{"type":"p","text":"Serum Untargeted MetabolomicsUrine Untargeted Metabolomics"},{"type":"p","text":"Exosome Untargeted MetabolomicsPlant Untargeted Metabolomics"},{"type":"p","text":"Cerebrospinal Fluid Untargeted Metabolomics"},{"type":"h4","text":"Targeted Metabolomics"},{"type":"p","text":"Targeted Metabolic PathwaysTryptophan MetabolismOne-carbon MetabolismGlycolysis PathwayTCA 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metabolomics, the development of new pesticides, etcFood industry: fruits, vegetables, dairy products, olive oil, etcBiomedical area: metabolomic profiling, biomarker discovery, etcPharmaceutical area: drug toxicity, drug metabolism, etc"},{"type":"h3","text":"Our Advantages"},{"type":"p","text":"The compounds we test are widely covered, ranging from small water-soluble molecules to large lipids.We can analyze any biological materials, including but not limited to biofluids and tissues from animals, cell cultures and humans.A comprehensive platform contains advanced instruments, including MS, GC-MS, LC-MS, NMR, and so on.A complete analysis report is offered, including method interpretation, data, and result files."},{"type":"p","text":"Our experts with years of experience in metabolomics, bioinformatics, statistics and various application fields ranging from food to pharmacy can help you plan, conduct, and report your metabolomics studies. Whether you want to study the whole metabolome, complex lipids, or just a few metabolites or pathways, we will closely work with you to define research purpose and develop customized plans. If you have any questions or specific requirements, please don’t hesitate to contact us."},{"type":"p","text":"Support Documents"},{"type":"p","text":"We have prepared a variety of materials for anyone interested in our solutions. Here are some of our recommended materials for your review! See All Resources→"},{"type":"p","text":"Untargeted vs Targeted Metabolomics"},{"type":"p","text":"Combined Metabolomic and Proteomic Analysis"},{"type":"p","text":"Submit the form below to download the PDF!"},{"type":"p","text":"Online Inquiry"},{"type":"p","text":"Please submit a detailed description of your project. We will provide you with a customized project plan to meet your research requests. You can also send emails directly to for inquiries."}],"loadingTime":0.731398344039917,"lastModifiedAt":"2022-11-02T00:00:00.000Z","metaData":{"title":"Metabolomics Service - Creative Proteomics","description":"Whether you want to study the whole metabolome, complex lipids, or just a few metabolites or pathways, Creative Proteomics will closely work with you to define research purpose and offer reliable services.","tags":["Metabolomics Service"],"image":null},"classification":{"label":"SERVICE","isVerified":true}}},{"score":7484.31,"highlights":[{"location":"verifiedServicePage.h4","snippets":["Q3: What is the difference between untargeted metabolomic analysis and lipid metabolomic analysis?"]},{"location":"verifiedServicePage.h3","snippets":["Untargeted Metabolomics Workflow"]},{"location":"verifiedServicePage.h1","snippets":["Untargeted Metabolomics Service"]},{"location":"verifiedServicePage.metaDescription","snippets":["Creative Proteomics provides analytical services for your untargeted metabolomics studies"]},{"location":"verifiedServicePage.metaTitle","snippets":["Untargeted Metabolomics Service - Creative Proteomics"]}],"page":{"_id":"649e9e9df3510add901754f1","url":{"entry":"https://www.creative-proteomics.com/services/untargeted-metabolomics.htm/","target":"https://www.creative-proteomics.com/services/untargeted-metabolomics.htm/"},"content":[{"type":"p","text":"Services"},{"type":"p","text":"Home Services Metabolomics Service Untargeted Metabolomics"},{"type":"h1","text":"Untargeted Metabolomics Service"},{"type":"p","text":"Untargeted metabolomics, namely discovery metabolomics, involves the comparison of the metabolome between the control and test groups, to identify differences between their metabolite profiles which may be relevant to specific biological conditions."},{"type":"h3","text":"Untargeted Metabolomics Workflow"},{"type":"h3","text":"There are usually three steps in the experimental workflow:"},{"type":"p","text":"Profiling in order to seek the metabolites with statistically significant variations in abundance within a set of experimental and control samples;Determination of metabolite ID, including the chemical structure;Comprehensions as the last step which makes connections between the identified metabolites and the biological processes."},{"type":"p","text":"In the workflow of discovery metabolomics, analytical reproducibility is critical for expression profiling work; annotation is a tentative identification based on an accurate mass match to a database or a spectral match to a library; the collected data can be interpreted for biomarker discovery, biological signature/fingerprint selection and pathway mapping. Above are the most important parts in untargeted metabolomic research. The tech panel in Creative Proteomics is experienced in sample preparation, data interpretations. It also can provide you reliable metabolite identification."},{"type":"h3","text":"What Untargeted Metabolomics services we provide?"},{"type":"p","text":"With integrated a set of separation, characterization, identification and quantification systems featured with excellent robustness & reproducibility, high and ultra-sensitivity, Creative Proteomics provides reliable, rapid and cost-effective Untargeted Metabolomics as below."},{"type":"p","text":"Serum Untargeted MetabolomicsUrine Untargeted MetabolomicsCerebrospinal Fluid Untargeted MetabolomicsPlant Untargeted Metabolomics Exosome Untargeted MetabolomicsGC–MS Untargeted Metabolomic AnalysisLC-MS/MS Untargeted Metabolomics ServicesGut Flora Metabolomics Research Solution"},{"type":"h3","text":"Advantages"},{"type":"p","text":"Based on advanced liquid phase tandem mass spectrometry technology, it can detect up to thousands of pg-level compounds, and can be competent for the detection of thermally unstable, non-volatile, and non-volatile substances.Lower cost"},{"type":"h3","text":"Analysis Content"},{"type":"p","text":"Data pre-processingUnivariate analysisPCA analysis, PLS-DA analysisDifference m/z value screening and identificationCluster analysisDifferential metabolite metabolic pathway annotation analysis"},{"type":"h3","text":"Sample Requirement"},{"type":"p","text":"Cells, tissues, urine, whole blood, serum, plasma, etc.Plasma or serum > 300 μL, urine > 5 mL, tissue > 100 mg, and cells > 107."},{"type":"h3","text":"FAQ"},{"type":"h4","text":"Q1: What databases for metabolite identification?"},{"type":"p","text":"A: Public databases such as KEGG, METLIN, etc., have an accuracy of less than 10ppm, and identification can be more accurate if the corresponding secondary spectra are available inside the database. If you want to verify, you can buy standard products. We also supply high quality standard products."},{"type":"h4","text":"Q2: Is there a requirement for the number of samples of untargeted metabolomes?"},{"type":"p","text":"A: For untargeted metabolomes whose goal is to find differential metabolites, the number of clinical samples is recommended to be no less than 30 per group. For model organisms and plant and animal samples, no less than 10 are recommended."},{"type":"h4","text":"Q3: What is the difference between untargeted metabolomic analysis and lipid metabolomic analysis?"},{"type":"p","text":"A: untargeted metabolome analysis is a research method to quantitatively analyze all metabolites in the organism and find the relative relationship between metabolites and physiological and pathological changes. The research object is small molecular substances with a relative molecular mass less than 1000Da, such as lipids , ketones, organic acids, etc. As we all know, genomics and proteomics explore life activities at the gene and protein levels respectively, but in fact many life activities in cells occur at the metabolite level, such as cell signal release, energy transfer and intercellular communication, etc. are all affected by metabolites regulation. Untargeted metabolome analysis is to discover differentially expressed metabolite information through univariate and multivariate analysis, thereby reflecting the environment in which cells are located and the interaction between them and external factors."},{"type":"p","text":"Lipidomics is a discipline that studies the lipid composition, lipid metabolism and lipid interactions of organisms, and is the most important branch of metabolomics. Lipids have a variety of important biological functions, such as material transport, energy metabolism, information transmission, and metabolic regulation. Abnormal lipid metabolism can cause many human diseases, including Alzheimer's disease, diabetes, obesity, and atherosclerosis. hardening, etc."},{"type":"p","text":"Support Documents"},{"type":"p","text":"We have prepared a variety of materials for anyone interested in our solutions. Here are some of our recommended materials for your review! See All Resources→"},{"type":"p","text":"Untargeted Metabolomics"},{"type":"p","text":"Submit the form below to download the PDF!"},{"type":"p","text":"Online Inquiry"},{"type":"p","text":"Please submit a detailed description of your project. We will provide you with a customized project plan to meet your research requests. You can also send emails directly to for inquiries."}],"loadingTime":1.6792247295379639,"lastModifiedAt":"2021-12-22T00:00:00.000Z","metaData":{"title":"Untargeted Metabolomics Service - Creative Proteomics","description":"Creative Proteomics provides analytical services for your untargeted metabolomics studies","tags":["untargeted metabolomics; discovery metabolomics; NMR; Mass Spectrometry; LC-MS; LC-MS/MS; GC-MS"],"image":null},"classification":{"label":"SERVICE","isVerified":true}}}]},{"company":{"__typename":"CrawledCompanyOverview","_id":"649c5ffc7620bf073aee7152","name":"Clinical Microbiomics","description":"We are a contract research organization specializing in microbiome and metabolome analysis. At Clinical Microbiomics, we believe the intricate microbial ecosystems known as microbiomes are the new frontier in human health. 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Metabolite profiling provides a real-time snapshot of these metabolic processes when the sample was collected. "]},{"location":"verifiedServicePage.h1","snippets":["Metabolomics"]},{"location":"verifiedServicePage.metaTitle","snippets":["Metabolomics – Clinical Microbiomics"]}],"page":{"_id":"649c60045649a1989e934ff7","url":{"entry":"https://clinical-microbiomics.com/services/metabolomics/","target":"https://clinical-microbiomics.com/services/metabolomics/"},"content":[{"type":"p","text":"HomeServicesMetabolomics"},{"type":"h1","text":"Metabolomics"},{"type":"h3","text":"Metabolomics is the large-scale study of small molecules known as metabolites, which aims to capture the multiple metabolic processes occurring in a biological system. Metabolite profiling provides a real-time snapshot of these metabolic processes when the sample was collected. "},{"type":"p","text":"Metabolomics provides an indispensable tool for microbiome research by illuminating the functional output of microbial communities. For understanding how the microbiome interacts with the human host, we need not only to look at the microbes, but also the metabolites they produce, which are directly interacting with our human physiology to promote health or cause disease.  "},{"type":"p","text":"The human microbiome is known to produce or process a myriad of different compounds – many of which affect human health, behavior and disease. To understand these intricate connections, we offer metabolomics and data analysis services through our specialized team at MS-Omics. Whether you are new to metabolomics or experienced in the analysis techniques, our services allow you to collaborate directly with scientists who specialize in metabolic profiling for different applications. Our team can advise you on suitable methods for your study, provide technical information on the analysis, and advise on analytical chemistry and advanced data handling.  "},{"type":"p","text":"We offer versatile packages for metabolic profiling that suit your needs – and with a quick turnaround time. Our platform offers both untargeted and targeted analysis options and uses gas chromatography (GC) or liquid chromatography (LC) coupled with a mass spectrometry (MS) detector. Our instruments include leading platforms from Thermo Scientific Q Exactive HF LC-MS/MS and Agilent Q GC-MS."},{"type":"h2","text":"Untargeted metabolomics "},{"type":"p","text":"With untargeted metabolomics, we can identify a wide range of compound classes that play crucial roles in microbial metabolism and host-microbe interactions. While the specific composition may vary depending on the sample type and experimental conditions, here are some of the relevant compound classes commonly detected: "},{"type":"p","text":"Amino acids serve as building blocks for proteins and participate in various metabolic pathways. Their analysis can provide insights into microbial protein synthesis, nitrogen utilization, and nutrient availability."},{"type":"p","text":"They include indole and its derivatives, which modulate host immune responses and gut barrier function. Tryptamine and serotonin derivatives impact host neurobiology and gut-brain communication. Kynurenine pathway metabolites are associated with inflammation, neurodegeneration, and psychiatric disorders. Additionally, tryptophan-derived AhR ligands play a role in immune regulation and gut health. Analyzing these metabolites provides insights into microbial-host interactions and their implications for health and disease."},{"type":"p","text":"Organic acids, including short-chain fatty acids (SCFAs) like acetate, propionate, and butyrate, are metabolic byproducts of microbial fermentation. These metabolites have been associated with important host-microbe interactions, including gut health, immune modulation, and energy metabolism."},{"type":"p","text":"Lipids are crucial components of microbial cell membranes and play roles in signalling, energy storage, and inflammation modulation. Analysis of lipid metabolites can provide insights into microbial membrane composition, lipid metabolism, and potential interactions with host lipid metabolism."},{"type":"p","text":"Nucleotides and nucleosides are involved in various cellular processes, including DNA and RNA synthesis, signalling, and energy transfer. Their detection can provide information on microbial nucleotide metabolism and potential interactions with host nucleotide pools."},{"type":"p","text":"Microbes are prolific producers of secondary metabolites, including antibiotics, toxins, and signalling molecules. Identifying these compounds can offer insights into microbial community dynamics, competitive interactions, and potential functional roles in the microbiome ecosystem. "},{"type":"p","text":"It’s important to note that untargeted metabolomics approaches are not limited to these classes and can detect a wide variety of other metabolites as well. The comprehensive analysis of these compound classes through untargeted metabolomics helps researchers uncover the metabolic capabilities of microbial communities, identify biomarkers of microbial activity, and understand the intricate interplay between the microbiome and host health. "},{"type":"p","text":" "},{"type":"h2","text":"Targeted metabolomics "},{"type":"p","text":"In addition to our untargeted metabolomics services, we provide a set of targeted panels for dedicated analysis of: "},{"type":"p","text":"Short Chain Fatty Acids (SCFAs) – Targeted method to quantify fatty acids including: Acetic acid, Formic acid, Propanoic acid, 2-Methylpropanoic acid, Butanoic acid Amino Acids and Organic Acids Bile Acids  Human Milk Oligosaccharides (HMOs) "},{"type":"p","text":"The specific methods used for microbiome-metabolomics depend on the information you intend to uncover from your samples. "},{"type":"p","text":" "},{"type":"h4","text":"Tell us about your project "},{"type":"p","text":"In microbiome studies, metabolomics data provide crucial information for investigating mechanisms. Contact us today to discuss how metabolomics analysis can complement your metagenomics data and enhance your overall knowledge about the microbiome. "},{"type":"p","text":"Visit the dedicated MS-Omics website for more information on our metabolomics capabilities. "},{"type":"h4","text":"Combining the power of metabolomics and metagenomics"},{"type":"p","text":"Read more about our multi-omics solutions for integrating metabolomics data with metagenomics data."},{"type":"p","text":" "},{"type":"p","text":" "},{"type":"p","text":" "},{"type":"h3","text":"Explore"},{"type":"h4","text":"Request a meeting"},{"type":"p","text":"Tell us about your microbiome research project."},{"type":"p","text":"I agree to submit my contact information to Clinical Microbiomics. *"}],"loadingTime":0.08385729789733887,"lastModifiedAt":null,"metaData":{"title":"Metabolomics – Clinical Microbiomics","description":"","tags":[],"image":null},"classification":{"label":"SERVICE","isVerified":true}}}]},{"company":{"__typename":"CrawledCompanyOverview","_id":"64a0aa9a9b47e9b0fdd0d4e7","name":"Medipredict","description":"Medipredict is a digital health company providing a comprehensive evaluation of your health status by combining information from multiple sources, such as detailed medical examinations, medical imaging, microbiome analysis, metabolomics, genomics and processing medical history. 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All your information will be encrypted, stored securely and handled privately. Next, we will send you a detailed questionnaire regarding your health status focusing on all areas of your life to get an overview of your body’s current condition. This will be an essential component and the first step on your way to reach optimal health with the help of Medipredict."},{"type":"h2","text":"Health service tailored to you"},{"type":"p","text":"An online medical consultation will be scheduled with a medical doctor to discuss your current health status as well as your past medical history, and to prepare you for your first visit. You may also ask any questions and let us know if you have any special requests. Based on this conversation, we will present you a personalized, step-by-step overview of the entire process."},{"type":"h2","text":"Your body in high resolution"},{"type":"p","text":"We have an integrated approach of combining the latest medical protocols and cutting-edge omics sciences, such as whole genome sequencing, gut microbiome analysis and plasma metabolomics. During your visit, you will go through a series of detailed examinations performed by a team of medical experts at a high-end private clinic. You will be accompanied by a personal health assistant throughout your health journey."},{"type":"h2","text":"Precision lies in the details"},{"type":"p","text":"Your samples will be processed by our certified, industry leader partner laboratories. Afterwards, the received raw data is analyzed and interpreted individually by our in-house experts. We encrypt and store the records according to the highest security standards. 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