Buchar Klinovská Olga, Vávrová Andrea, Benson Veronika, Hubálek Kalbáčová Marie
Department of Science and Research in Biomedical Applications, Faculty of Health Studies, Technical University of Liberec, Liberec, Czech Republic.
Institute of Pathological Physiology, the First Faculty of Medicine, Charles University, Prague, Czech Republic.
Biotechnol Appl Biochem. 2025 Aug;72(4):1110-1120. doi: 10.1002/bab.2717. Epub 2025 Jul 1.
Appropriate in vitro systems are needed to evaluate effective strategies to prevent implant-associated infections, which remain a significant complication in today's medicine. Conventional in vitro models involving monocultures cannot fully reflect the tissue environment in vivo. Coculturing eukaryotic and prokaryotic pathogenic and commensal cells in in vitro models configured according to the needs of each tissue could better mimic complex tissue structures and actual clinical conditions. This approach may also enable better investigations of cell-cell interactions and interactions with an implant surface than culturing each cohort separately. This review aims to provide an overview of current studies and techniques that demonstrate competitive colonization between mammalian and bacterial cell populations (pathogenic and commensal), highlight the gaps in current techniques, and speculate on the future of using these complex cell systems in the field of tissue engineering and regenerative medicine.
需要合适的体外系统来评估预防植入物相关感染的有效策略,植入物相关感染在当今医学中仍然是一个重大并发症。涉及单一培养物的传统体外模型不能完全反映体内的组织环境。在根据每个组织的需求配置的体外模型中共培养真核和原核致病细胞及共生细胞,可以更好地模拟复杂的组织结构和实际临床情况。与分别培养每个细胞群体相比,这种方法还可能使对细胞间相互作用以及与植入物表面相互作用的研究更加深入。本综述旨在概述当前的研究和技术,这些研究和技术展示了哺乳动物和细菌细胞群体(致病和共生)之间的竞争性定植,突出当前技术的差距,并推测这些复杂细胞系统在组织工程和再生医学领域的未来应用。