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Compositional Variation and Functional Mechanism of Exosomes in the Articular Microenvironment in Knee Osteoarthritis

机译:膝关节骨关节炎关节微环境外外瘤的组成变化和功能机制

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摘要

Osteoarthritis (OA) is a major cause of disability worldwide with increasing age. Knee OA (KOA) is the most prevalent type of OA. Recently, it is considered that KOA is a whole joint disease, including articular cartilage, subchondral bone, synovium, ligaments, joint capsules, and muscles around the joint. Exosomes in knee joint are mainly secreted by articular chondrocytes and synoviocytes. They participate in cell and tissue cross-talk by carrying a complex cargo of proteins, lipids, nucleic acids, etc. Under normal conditions, exosomes maintain the microenvironmental homeostasis of the joint cavity. Under pathological conditions, the composition and function of exosomes changes, which in turn, disrupts the balance of anabolism and catabolism of articular chondrocyte and facilitates inflammatory responses, thus accelerating KOA progression. As a regenerative medicine, mesenchymal stem cells (MSCs) are promised to facilitate repair of degenerated cartilage and decelerate OA process. The therapeutic function of MSC mainly depends on MSC-derived exosomes, which can restore the homeostasis of the articular microenvironment. In the future, the specific mechanism of exosomes for OA treatment needs further elucidation, and the treatment effect of exosomes for long-term and/or severe OA needs further exploration.
机译:骨关节炎(OA)是随着年龄越来越多的全球残疾的主要原因。膝盖OA(KOA)是最普遍的OA类型。最近,认为KOA是整个关节疾病,包括关节软骨,骨髓骨,滑膜,韧带,关节胶囊和关节周围的肌肉。膝关节中的外泌体主要由关节软骨细胞和Synoviocytes分泌。它们通过在正常条件下携带复杂的蛋白质,脂质,核酸等来参与细胞和组织串扰,外泌体维持关节腔的微环境稳态。在病理条件下,外泌体的组成和功能变化,这反过来扰乱了关节软骨细胞的代谢和分解代谢的平衡,并促进炎症反应,从而加速KOA进展。作为再生药物,承诺,间充质干细胞(MSCs)促进修复退化的软骨和减速OA过程。 MSC的治疗功能主要取决于MSC衍生的外泌体,其可以恢复关节微环境的稳态。将来,外来治疗的特异性机制需要进一步阐明,并且外索肌肉治疗长期和/或严重OA的治疗效果需要进一步的探索。

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