Departments of Orthopedic Surgery, Chang Gung University College of Medicine, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung, Taiwan.
Core Laboratory for Phenomics & Diagnostics, Chang Gung University College of Medicine, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung, Taiwan.
Sci Rep. 2017 Jun 15;7(1):3584. doi: 10.1038/s41598-017-03616-w.
Synovitis contributes to the development of osteoarthritis (OA) of the knee. MicroRNAs regulate joint microenvironment homeostasis and deterioration. This study was undertaken to characterize the actions of microRNA-29a (miR-29a) to synovial remodeling in OA joints. Synovial specimens isolated from patients with end-stage OA knees showed abundant fibrotic matrix and vessel histopathology concomitant with weak miR-29a expression. In vitro, miR-29a knockdown caused synovial fibroblasts to exhibit high expressions of collagen III, TGF-β1, MMP9, MMP13, and ADAMTS5, whereas miR-29a overexpression diminished these joint-deleterious factors. In collagenase-mediated OA pathogenesis, miR-29a-overexpressing transgenic mice showed minor responses to hyperplasia, macrophage infiltration, fibrosis, hyperangiogenesis, and VEGF expression in synovial lesions. These effects mitigated articular cartilage loss and gait aberrance of injured joints. Intra-articular administration of miR-29a precursor lessened the collagenase aggravation of excessive synovial remodeling reactions and thereby sustained joint tissue integrity. miR-29a lowered VEGF production and angiogenic activities in synovial fibroblasts through targeting the 3'-UTR of VEGF. Taken together, miR-29a deficiency exacerbated synovitis pathogenesis in the end-stage OA knees. miR-29a signaling fends off excessive synovial angiogenesis and fibrosis, which delays joint destruction. This study sheds new light on the protective effects against synovial deterioration and the therapeutic advantage of miR-29a in OA knees.
滑膜炎是膝关节骨关节炎(OA)发展的原因之一。微小 RNA 调控关节微环境的稳态和恶化。本研究旨在探讨微小 RNA-29a(miR-29a)在 OA 关节滑膜重塑中的作用。从终末期 OA 膝关节患者的滑膜标本中观察到丰富的纤维性基质和血管组织病理学,同时伴有 miR-29a 表达减弱。在体外,miR-29a 敲低导致滑膜成纤维细胞高表达胶原 III、TGF-β1、MMP9、MMP13 和 ADAMTS5,而 miR-29a 过表达则减少了这些关节损伤因子。在胶原酶介导的 OA 发病机制中,miR-29a 过表达的转基因小鼠对滑膜病变中的过度增生、巨噬细胞浸润、纤维化、过度血管生成和 VEGF 表达的反应较小。这些作用减轻了关节软骨的丢失和受损关节的步态异常。关节内给予 miR-29a 前体减轻了胶原酶对过度滑膜重塑反应的加重,从而维持了关节组织的完整性。miR-29a 通过靶向 VEGF 的 3'-UTR 降低了滑膜成纤维细胞中 VEGF 的产生和血管生成活性。综上所述,miR-29a 缺乏加剧了终末期 OA 膝关节滑膜炎的发病机制。miR-29a 信号阻止了过度的滑膜血管生成和纤维化,从而延缓了关节破坏。本研究为保护滑膜免受恶化以及 miR-29a 在 OA 膝关节中的治疗优势提供了新的见解。