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Use Case

Serum from Dog with Thyroid Carcinoma for Cancer Diagnosis

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Use Case

Serum from Dog with Thyroid Carcinoma for Cancer Diagnosis

Description

The study assessed predictors of survival by calculating cause-specific hazard ratios and confidence intervals, classifying causes of death as thyroid-related or other causes. Serum was used to monitor thyroxine levels in dogs with thyroid carcinoma. The overall median survival time was 802 days, with 77.4% of dogs surviving over 500 days. Metastases at admission were linked to higher thyroid cancer-related fatality, while thrombosis increased the risk of death from other causes. Nonfollicular carcinoma and chemotherapy were associated with a higher risk of thyroid cancer-related death. The study concluded that thyroidectomy should be considered for dogs with thyroid tumors, even with the presence of nonfollicular carcinoma and metastases. [Ref: Enache D, Ferro L, Morello EM, et al. Thyroidectomy in dogs with thyroid tumors: Survival analysis in 144 cases (1994-2018). J Vet Intern Med. 2023; 37(2): 635-647. doi:10.1111/jvim.16644]

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Cancer Research

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Serum from Dog with Thyroid Carcinoma for Cancer Diagnosis is a Use Case of:

Product: Canine Serum - Thyroid Carcinoma

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Canine Serum - Thyroid Carcinoma

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Davide Confalonieri, PhD

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PBMCs are used in antibody discovery due to their role in the immune response. Antibody-secreting cells (ASCs), a type of PBMC, are an excellent source of high-affinity antibodies with therapeutic potential. Millions of PBMCs can be isolated and screened to identify antigen-specific ASCs that secrete antibodies with desirable properties. One method involves microfluidic encapsulation of single ASCs into an antibody capture hydrogel, followed by antigen bait sorting using flow cytometry, enabling the rapid discovery of monoclonal antibodies. These antibodies can then be further characterized for their binding affinity and neutralizing capacity, making PBMCs a valuable resource for developing antibody-based drugs and studying immune responses. [Ref: Fischer, K., Lulla, A., So, T.Y. et al. Rapid discovery of monoclonal antibodies by microfluidics-enabled FACS of single pathogen-specific antibody-secreting cells. Nat Biotechnol (2024). https://doi.org/10.1038/s41587-024-02346-5]

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