首页> 外文期刊>Arthritis Research >Intra-articular injection of synthetic microRNA-210 accelerates avascular meniscal healing in rat medial meniscal injured model
【24h】

Intra-articular injection of synthetic microRNA-210 accelerates avascular meniscal healing in rat medial meniscal injured model

机译:关节腔内注射合成的microRNA-210促进大鼠内侧半月板损伤模型中的非血管半月板愈合

获取原文
获取外文期刊封面目录资料

摘要

Introduction The important functions of the meniscus are shock absorption, passive stabilization and load transmission of the knee. Because of the avascularity of two-thirds of the meniscal center region, the treatment of tears in this area is hard. Recently, microRNAs have been proven to play an important role in the pathogenesis of diseases. We focused on microRNA (miR)-210, which plays a wide spectrum of roles comprising mitochondrial metabolism, angiogenesis, DNA repair and cell survival. This study aimed to investigate the effect of intra-articular injection of synthetic miR-210 on the injured meniscus in the avascular zone. Methods The middle segments of the medial meniscus of Spraque Dawley rats were incised longitudinally with a scalpel. An intra-articular injection of double-stranded (ds) miR-210 (for control group using control dsRNA) with atelocollagen was administered immediately after injury. Four weeks and 12?weeks after the injection, we conducted a histologic evaluation, immunohistochemical evaluation and Real-time PCR analysis. In vitro , the inner meniscus and synovial cells were isolated from rat knee joint, and were transfected with ds miR-210 or control dsRNA. Real-time PCR and immunohistochemical evaluations were performed. Results Twenty-four hours after the injection, FAM (Fluorescein amidite) labeled miR-210 was observed in the cells around the injured site. Four weeks after the injection, the injured site of the miR-210 group was filled with repaired tissue while that of the control was not repaired. In gene expression analysis of the meniscus, the expression of miR-210, Collagen type 2 alpha 1 (Col2a1), Vascular endothelial growth factor (VEGF), and Fibroblast growth factor-2 (FGF2) in the miR-210 group was significantly higher than that in the control. At 12?weeks, the intra-articular injection of miR-210 had healed the injured site of the meniscus and had prevented articular cartilage degeneration. In vitro , miR-210 upregulated Col2a1 expression in the meniscus cells and VEGF and FGF2 expression in the synovial cells. Conclusions An intra-articular injection of ds miR-210 was effective in the healing of the damaged white zone meniscus through promotion of the collagen type 2 production from meniscus cells and through upregulated of VEGF and FGF2 from synovial cells.
机译:简介半月板的重要功能是减震,被动稳定和膝盖的负荷传递。由于半月板中心区域三分之二的无血管性,因此很难对该区域的眼泪进行治疗。最近,已证明microRNA在疾病的发病机理中起重要作用。我们专注于microRNA(miR)-210,它起着广泛的作用,包括线粒体代谢,血管生成,DNA修复和细胞存活。这项研究旨在调查关节腔内注射合成miR-210对无血管区受伤的半月板的影响。方法用解剖刀纵向切开Spraque Dawley大鼠内侧半月板的中段。损伤后立即进行关节腔内注射双链(ds)miR-210(对照组,使用对照dsRNA)与端胶原。注射后4周和12周,我们进行了组织学评估,免疫组织化学评估和实时PCR分析。在体外,从大鼠膝关节分离出内侧半月板和滑膜细胞,并用ds miR-210或对照dsRNA转染。进行实时PCR和免疫组化评估。结果注射后二十四小时,在受伤部位周围的细胞中观察到了标记为miR-210的FAM(荧光素酰胺)。注射后四周,miR-210组的受伤部位充满了修复的组织,而对照组则未修复。在半月板的基因表达分析中,miR-210组的miR-210、2型胶原1α(Col2a1),血管内皮生长因子(VEGF)和成纤维细胞生长因子2(FGF2)的表达明显更高。比控制中的在第12周时,关节腔内注射miR-210已治愈半月板的受伤部位,并预防了关节软骨的变性。在体外,miR-210上调了半月板细胞中Col2a1的表达以及滑膜细胞中VEGF和FGF2的表达。结论关节腔内注射ds miR-210可通过促进半月板细胞产生的2型胶原蛋白的产生以及滑膜细胞中VEGF和FGF2的上调来有效治愈受损的白区半月板。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号