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首页> 外文期刊>Stem Cells >Synovial Mesenchymal Stem Cells Promote Meniscus Regeneration Augmented by an Autologous Achilles Tendon Graft in a Rat Partial Meniscus Defect Model
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Synovial Mesenchymal Stem Cells Promote Meniscus Regeneration Augmented by an Autologous Achilles Tendon Graft in a Rat Partial Meniscus Defect Model

机译:滑膜间充质干细胞促进半月板再生由大鼠部分半月板缺陷模型中的自体跟腱腱移植增强。

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Although meniscus defects and degeneration are strongly correlated with the later development of osteoarthritis, the promise of regenerative medicine strategies is to prevent and/or delay the disease's progression. Meniscal reconstruction has been shown in animal models with tendon grafting and transplantation of mesenchymal stem cells (MSCs); however, these procedures have not shown the same efficacy in clinical studies. Here, our aim was to investigate the ability of tendon grafts pretreated with exogenous synovial-derived MSCs to prevent cartilage degeneration in a rat partial meniscus defect model. We removed the anterior half of the medial meniscus and grafted autologous Achilles tendons with or without a 10-minute pretreatment of the tendon with synovial MSCs. The meniscus and surrounding cartilage were evaluated at 2, 4, and 8 weeks (n=5). Tendon grafts increased meniscus size irrespective of synovial MSCs. Histological scores for regenerated menisci were better in the tendon + MSC group than in the other two groups at 4 and 8 weeks. Both macroscopic and histological scores for articular cartilage were significantly better in the tendon + MSC group at 8 weeks. Implanted synovial MSCs survived around the grafted tendon and native meniscus integration site by cell tracking assays with luciferase+, LacZ+, DiI+, and/or GFP+ synovial MSCs and/or GFP+ tendons. Flow cytometric analysis showed that transplanted synovial MSCs retained their MSC properties at 7 days and host synovial tissue also contained cells with MSC characteristics. Synovial MSCs promoted meniscus regeneration augmented by autologous Achilles tendon grafts and prevented cartilage degeneration in rats. Stem Cells2015;33:1927-1938
机译:尽管半月板缺陷和变性与骨关节炎的后期发展密切相关,但再生医学策略的前景是预防和/或延缓疾病的进展。在具有腱移植和间充质干细胞(MSC)移植的动物模型中已显示出半月板重建;但是,这些程序在临床研究中并未显示出相同的功效。在这里,我们的目的是研究用外源性滑膜间充质干细胞预处理的腱移植物在大鼠部分半月板缺损模型中预防软骨变性的能力。我们去除了内侧半月板的前半部分,并在有或没有用滑膜MSC对腱进行10分钟预处理的情况下移植了自体跟腱。在第2、4和8周评估半月板和周围的软骨(n = 5)。肌腱移植物增加了半月板大小,而与滑膜间质干细胞无关。肌腱+ MSC组在4周和8周时的再生半月板组织学评分优于其他两组。肌腱+ MSC组在第8周时,关节软骨的宏观和组织学评分均明显更好。通过使用荧光素酶+,LacZ +,DiI +和/或GFP +滑膜MSC和/或GFP +肌腱的细胞跟踪分析,植入的滑膜MSC在移植的肌腱和天然半月板整合部位周围存活。流式细胞仪分析显示,移植的滑膜MSC在第7天仍保持其MSC特性,宿主滑膜组织也含有具有MSC特性的细胞。滑膜间充质干细胞通过自体跟腱移植促进半月板再生,并防止大鼠软骨变性。干细胞2015; 33:1927-1938

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