Residual protein analysis by SDS–PAGE in clinically manufactured BM‐MSC products

Author:

Kilic Pelin12ORCID,Karabudak Sema34,Cosar Begum25,Savran Busra Nigar26,Yalcin Merve7

Affiliation:

1. Department of Stem Cells and Regenerative Medicine, Stem Cell Institute Ankara University Ankara Turkey

2. HücreCELL® Biotechnology Development and Commerce, Inc. Ankara Turkey

3. Department of Medical Genetics, Medical Faculty Ankara Yıldırım Beyazıt University Ankara Turkey

4. Central Research Laboratory Research and Application Center Ankara Yıldırım Beyazıt University Ankara Turkey

5. Department of Molecular Biology and Genetics, Institute of Science Başkent University Ankara Turkey

6. Department of Biology Middle East Technical University Ankara Turkey

7. School of Pharmacy English Program Ankara University Ankara Turkey

Abstract

AbstractResidual substances that are considered hazardous to the recipient must be removed from final cellular therapeutic products manufactured for clinical purposes. In doing so, quality rules determined by competent authorities (CAs) for the clinical use of tissue‐ and cell‐based products can be met. In our study, we carried out residual substance analyses, and purity determination studies of trypsin and trypsin inhibitor in clinically manufactured bone marrow‐derived mesenchymal stromal/stem cell products, using the sodium dodecyl sulfate–polyacrylamide gel electrophoresis (SDS–PAGE) method. Despite being a semiquantitative method, SDS–PAGE has several benefits over other methods for protein analysis, such as simplicity, convenience of use, and affordability. Due to its convenience and adaptability, SDS–PAGE is still a commonly used method in many laboratories, despite its limits in dynamic range and quantitative precision. Our goal in this work was to show that SDS–PAGE may be used effectively for protein measurement, especially where practicality and affordability are the major factors. The results of our study suggest a validated method to guide tissue and cell manufacturing sites for making use of an agreeable, accessible, and cost‐effective method for residual substance analyses in clinically manufactured cellular therapies.

Publisher

Wiley

Reference67 articles.

1. Animal tissue culture principles and applications

2. Trypsin‐induced proteome alteration during cell subculture in mammalian cells;Huang HL;J Biomed Sci,2010

3. Application of the Bradford assay for cell lysis quantification: residual protein content in cell culture supernatants;Sissolak B;Biotechnol J,2019

4. US Dept. Health and Human Services Food and Drug Administration Center for Biological Evaluation and Research Guidance FDA.Content and format of chemistry manufacturing and controls information and establishment description information for a vaccine or related product.https://www.fda.gov/regulatory‐information/search‐fda‐guidance‐documents/content‐and‐format‐chemistry‐manufacturing‐and‐controls‐information‐and‐establishment‐description–1(1999). Accessed 03 July 2023.

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