Shekari Faezeh, Alibhai Faisal J, Baharvand Hossein, Börger Verena, Bruno Stefania, Davies Owen, Giebel Bernd, Gimona Mario, Salekdeh Ghasem Hosseini, Martin-Jaular Lorena, Mathivanan Suresh, Nelissen Inge, Nolte-'t Hoen Esther, O'Driscoll Lorraine, Perut Francesca, Pluchino Stefano, Pocsfalvi Gabriella, Salomon Carlos, Soekmadji Carolina, Staubach Simon, Torrecilhas Ana Claudia, Shelke Ganesh Vilas, Tertel Tobias, Zhu Dandan, Théry Clotilde, Witwer Kenneth, Nieuwland Rienk
Department of Stem Cells and Developmental Biology, Cell Science Research Center Royan Institute for Stem Cell Biology and Technology, ACECR Tehran Iran.
Advanced Therapy Medicinal Product Technology Development Center (ATMP-TDC), Cell Science Research Center Royan Institute for Stem Cell Biology and Technology, ACECR Tehran Iran.
J Extracell Biol. 2023 Oct 16;2(10):e115. doi: 10.1002/jex2.115. eCollection 2023 Oct.
Cell culture-conditioned medium (CCM) is a valuable source of extracellular vesicles (EVs) for basic scientific, therapeutic and diagnostic applications. Cell culturing parameters affect the biochemical composition, release and possibly the function of CCM-derived EVs (CCM-EV). The CCM-EV task force of the Rigor and Standardization Subcommittee of the International Society for Extracellular Vesicles aims to identify relevant cell culturing parameters, describe their effects based on current knowledge, recommend reporting parameters and identify outstanding questions. While some recommendations are valid for all cell types, cell-specific recommendations may need to be established for non-mammalian sources, such as bacteria, yeast and plant cells. Current progress towards these goals is summarized in this perspective paper, along with a checklist to facilitate transparent reporting of cell culturing parameters to improve the reproducibility of CCM-EV research.
细胞培养条件培养基(CCM)是用于基础科学、治疗和诊断应用的细胞外囊泡(EVs)的宝贵来源。细胞培养参数会影响CCM衍生的EVs(CCM-EV)的生化组成、释放以及可能的功能。国际细胞外囊泡协会严谨与标准化小组委员会的CCM-EV特别工作组旨在确定相关的细胞培养参数,根据现有知识描述其影响,推荐报告参数并识别未解决的问题。虽然一些建议对所有细胞类型都有效,但对于非哺乳动物来源的细胞,如细菌、酵母和植物细胞,可能需要制定特定于细胞类型的建议。本文综述了在这些目标上的当前进展,并提供了一份清单,以促进细胞培养参数的透明报告,提高CCM-EV研究的可重复性。