Center for Regenerative Medicine, University For Continuing Education, Krems, Austria.
Department of Regenerative Medicine, State Research Institute Centre for Innovative Medicine, Vilnius, Lithuania.
Methods Mol Biol. 2023;2598:123-140. doi: 10.1007/978-1-0716-2839-3_10.
Extracellular vesicles (EVs) have the capacity for use in cartilage tissue engineering by stimulating tissue repair and microenvironmental reprogramming. This makes them ideal candidates for treating focal cartilage defects and cartilage degeneration in osteoarthritis (OA). Observational studies have reported beneficial biological effects of EVs, such as inhibition of inflammation, enhanced extracellular matrix deposition, and reduced cartilage degradation. Isolation of EVs derived from different source materials such as conditioned cell culture media or biofluids is essential to attribute observed biological effects to EVs as genuine effectors. This chapter presents a density- and a size-based method as well as a combination of both for isolation of EVs from conditioned cell culture media or biofluids. In addition, three methods for characterization of isolated EVs are suggested based on physical properties, protein profiling, and ultrastructural morphology.
细胞外囊泡 (EVs) 通过刺激组织修复和微环境重编程,具有在软骨组织工程中应用的潜力。这使得它们成为治疗局灶性软骨缺损和骨关节炎 (OA) 软骨退变的理想候选物。观察性研究报告了 EVs 的有益生物学效应,例如抑制炎症、增强细胞外基质沉积和减少软骨降解。从不同来源材料(如条件细胞培养物或生物流体)分离 EVs 对于将观察到的生物学效应归因于 EVs 作为真正的效应物至关重要。本章介绍了一种基于密度和大小的方法以及两者的组合,用于从条件细胞培养物或生物流体中分离 EVs。此外,还根据物理性质、蛋白质分析和超微结构形态提出了三种分离 EVs 的特征分析方法。