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Use Case

Serum from Cat with Mammary Carcinoma for Cancer Diagnostics & Biomarker Development

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Use Case

Serum from Cat with Mammary Carcinoma for Cancer Diagnostics & Biomarker Development

Description

Serum amyloid A (SAA) concentrations are higher in mammary tumors with metastases in both humans and animals. A study investigated the effects of recombinant feline SAA (rfSAA) on the invasiveness of feline mammary carcinoma cells. It found that rfSAA significantly increased matrix metalloproteinase-9 (MMP-9) expression in three out of four feline mammary carcinoma cell lines, enhancing their invasive capabilities. These findings suggest a novel role for SAA in promoting tumor invasion and metastasis, potentially offering new therapeutic strategies targeting SAA to manage these processes in mammary cancer. [Ref: Tamamoto, T., Ohno, K., Goto-Koshino, Y., & Tsujimoto, H. (2014). Serum amyloid A promotes invasion of feline mammary carcinoma cells. Journal of Veterinary Medical Science, 76(8), 1183–1188. https://doi.org/10.1292/jvms.14-0108]

Details

Industries:

Cancer Research, Biomarker Development

Related product to Serum from Cat with Mammary Carcinoma for Cancer Diagnostics & Biomarker Development

Serum from Cat with Mammary Carcinoma for Cancer Diagnostics & Biomarker Development is a Use Case of:

Product: Feline Serum - Mammary Carcinoma

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Feline Serum - Mammary 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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Beagle PBMCs have been used to generate anti-canine CD20 antibodies, which can target B cells and B cell lymphoma cells. These antibodies are tested for their binding affinity and ability to induce cell death, showing promise as therapeutic antibodies for treating canine B cell lymphoma. [Ref: Mizuno, T., Kato, Y., Kaneko, M.K. et al. Generation of a canine anti-canine CD20 antibody for canine lymphoma treatment. Sci Rep 10, 11476 (2020). https://doi.org/10.1038/s41598-020-68470-9]

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Pig PBMCs have been used in antibody discovery to isolate antigen-specific B cells for monoclonal antibody (mAb) cloning. For example, researchers have established platforms to sort antigen-specific single B cells from immunized pigs, allowing for the direct cloning and expression of antigen-specific mAbs. Sequential vaccination of pigs with different serotypes of the foot-and-mouth disease virus (FMDV) enabled the isolation of broadly neutralizing antibodies (bnAbs) by dissecting B-cell receptor (BCR) gene repertoires from PBMCs. [Ref: Li, F., Wu, S., Lv, L., Huang, S., Zhang, Z., Zerang, Z., Li, P., Cao, Y., Bao, H., Sun, P., Bai, X., He, Y., Fu, Y., Yuan, H., Ma, X., Zhao, Z., Zhang, J., Wang, J., Wang, T., Li, D., … Li, K. (2024). Discovery, recognized antigenic structures, and evolution of cross-serotype broadly neutralizing antibodies from porcine B-cell repertoires against foot-and-mouth disease virus. PLoS pathogens, 20(10), e1012623. https://doi.org/10.1371/journal.ppat.1012623]

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