Nonaka Carolina Kymie Vasques, Costa-Ferro Zaquer Suzana Munhoz, Arraes Ana Carolina Palmeira, Weber Thamires Lopes, de Aragão França Luciana Souza, Silva Katia Nunes, Souza Bruno Solano de Freitas
Hospital São Rafael, Salvador, Bahia, Brazil; Instituto D'Or de Pesquisa e Ensino (IDOR), Salvador, Bahia, Brazil.
Hospital São Rafael, Salvador, Bahia, Brazil.
Hematol Transfus Cell Ther. 2025 Jan-Mar;47(1):103727. doi: 10.1016/j.htct.2024.09.2486. Epub 2024 Nov 15.
Mesenchymal stromal cells are multipotent cells present in various tissues that are widely studied for relevant therapeutic potential due to their paracrine immunomodulatory and tissue regenerating properties. Many mesenchymal stromal cell-based products are under investigation for the treatment of different clinical conditions. Recently, the therapeutic potential of the extracellular vesicles released by these cells has been under focus, with emphasis on clinical translation. Sterility testing during manufacture and before the final release of the advanced therapy medicinal products to markets is a critical quality control measure. Therefore, analytical methods for sterility testing in addition to complying with pharmacopeial standards must validate the adequacy of each product and evaluate matrix interference. Here, an automated system for sterility control of reagents used in the bioprocessing of mesenchymal stromal cells and their extracellular vesicles was validated. Reagents (culture media, antibiotics, and excipients in the final product) were inoculated with 10 or 50 colony forming units of microorganisms in BACTEC™ Peds Plus™ T/F aerobic/anaerobic bottles. Under aerobic conditions (BACTEC™ Peds Plus™ T/F aerobic bottles), microbial growth was detected within an acceptable incubation time according to regulatory guidelines. The results of this study corroborate other studies that use automated sterility testing as an alternative to the manual USP<71> compendial method to detect microorganisms close to the limit of detection within an acceptable incubation time.
间充质基质细胞是存在于各种组织中的多能细胞,由于其旁分泌免疫调节和组织再生特性,其相关治疗潜力受到广泛研究。许多基于间充质基质细胞的产品正在进行不同临床病症治疗的研究。最近,这些细胞释放的细胞外囊泡的治疗潜力受到关注,重点是临床转化。在先进治疗药品生产过程中和最终投放市场之前进行无菌测试是一项关键的质量控制措施。因此,除了符合药典标准外,无菌测试的分析方法必须验证每种产品的适用性并评估基质干扰。在此,验证了一种用于间充质基质细胞及其细胞外囊泡生物加工中使用的试剂无菌控制的自动化系统。将试剂(培养基、抗生素和最终产品中的赋形剂)接种到BACTEC™ Peds Plus™ T/F需氧/厌氧瓶中的10或50个微生物菌落形成单位。在需氧条件下(BACTEC™ Peds Plus™ T/F需氧瓶),根据监管指南,在可接受的培养时间内检测到微生物生长。本研究结果证实了其他研究,即使用自动化无菌测试作为手动USP<71>药典方法的替代方法,在可接受的培养时间内检测接近检测限的微生物。