Orthopedic Surgery, Inha University Hospital, 22332 Inhang-ro 27, Jung-gu, Incheon 22332, Korea.
Int J Mol Sci. 2022 Jan 30;23(3):1618. doi: 10.3390/ijms23031618.
Osteoarthritis (OA) has generally been introduced as a degenerative disease; however, it has recently been understood as a low-grade chronic inflammatory process that could promote symptoms and accelerate the progression of OA. Current treatment strategies, including corticosteroid injections, have no impact on the OA disease progression. Mesenchymal stem cells (MSCs) based therapy seem to be in the spotlight as a disease-modifying treatment because this strategy provides enlarged anti-inflammatory and chondroprotective effects. Currently, bone marrow, adipose derived, synovium-derived, and Wharton's jelly-derived MSCs are the most widely used types of MSCs in the cartilage engineering. MSCs exert immunomodulatory, immunosuppressive, antiapoptotic, and chondrogenic effects mainly by paracrine effect. Because MSCs disappear from the tissue quickly after administration, recently, MSCs-derived exosomes received the focus for the next-generation treatment strategy for OA. MSCs-derived exosomes contain a variety of miRNAs. Exosomal miRNAs have a critical role in cartilage regeneration by immunomodulatory function such as promoting chondrocyte proliferation, matrix secretion, and subsiding inflammation. In the future, a personalized exosome can be packaged with ideal miRNA and proteins for chondrogenesis by enriching techniques. In addition, the target specific exosomes could be a gamechanger for OA. However, we should consider the off-target side effects due to multiple gene targets of miRNA.
骨关节炎(OA)通常被认为是一种退行性疾病;然而,最近人们已经认识到它是一种低水平的慢性炎症过程,这种过程可能会引发症状并加速 OA 的进展。目前的治疗策略,包括皮质类固醇注射,对 OA 的疾病进展没有影响。间充质干细胞(MSCs)为基础的治疗方法似乎是一种疾病修正治疗的焦点,因为这种策略提供了扩大的抗炎和软骨保护作用。目前,骨髓、脂肪组织、滑膜和 Wharton 胶衍生的 MSC 是软骨工程中最广泛使用的 MSC 类型。MSCs 主要通过旁分泌作用发挥免疫调节、免疫抑制、抗凋亡和软骨生成作用。因为 MSC 在给药后很快从组织中消失,最近,MSC 衍生的外泌体作为 OA 的下一代治疗策略受到了关注。MSC 衍生的外泌体包含多种 miRNA。外泌体 miRNA 通过免疫调节功能,如促进软骨细胞增殖、基质分泌和减轻炎症,在软骨再生中发挥关键作用。在未来,可以通过富集技术,用理想的 miRNA 和蛋白质来个性化包装外体,用于软骨生成。此外,针对特定靶点的外泌体可能会成为 OA 的一个改变游戏规则的因素。然而,我们应该考虑由于 miRNA 的多个基因靶点而产生的脱靶副作用。