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Intra-articular delivery of extracellular vesicles secreted by chondrogenic progenitor cells from MRL/MpJ superhealer mice enhances articular cartilage repair in a mouse injury model

机译:来自MRL / MPJ超级蛋白小鼠的软骨祖细胞分泌细胞内囊泡的细胞外囊泡的内腔内递送增强了小鼠损伤模型的关节软骨修复

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Chondrogenic progenitor cells (CPCs) have high self-renewal capacity and chondrogenic potential. Intra-articular delivery of purified mesenchymal stem cells (MSCs) from MRL/MpJ “superhealer” mice increased bone volume during repair and prevents post-traumatic arthritis. Recently, although extracellular vesicles released from MSCs have been used widely for treating OA, the application of extracellular vesicles secreted by CPCs from MRL/MpJ mice in OA therapy has never been reported. In this study, we evaluated the effects of extracellular vesicles secreted by CPCs from control CBA (CBA-EVs) and MRL/MpJ mice (MRL-EVs) on proliferation and migration of murine chondrocytes. We also determined here if weekly intra-articular injections of CBA-EVs and MRL-EVs would repair and regenerate surgically induced model in mice. CPC surface markers were detected by flow cytometry. CBA-EVs and MRL-EVs were isolated using an ultrafiltration method. Nanoparticle tracking analysis, transmission electron microscopy, and western blots were used to identify extracellular vesicles. CBA-EVs and MRL-EVs were injected intra-articularly in a mouse model of surgical destabilization of the medial meniscus (DMM)-induced OA, and histological and immunohistochemistry analyses were used to assess the efficacy of exosome injections. We used miRNA-seq analysis to analyze the expression profiles of exosomal miRNAs derived from CBA-EVs as well as MRL-EVs. Cell-counting and scratch assays were used to evaluate the effects of CBA-EVs and MRL-EVs on proliferation and migration of murine chondrocytes, respectively. Meanwhile, a specific RNA inhibitor assesses the roles of the candidate miRNAs in CPC-EV-induced regulation of function of chondrocytes. Both CBA-EVs and MRL-EVs stimulated chondrocyte proliferation and migration, but MRL-EVs exerted a stronger effect than CBA-EVs. The similar result was also observed in in vivo study, which indicated that injecting either CBA-EVs or MRL-EVs attenuated OA, but MRL-EVs showed a superior therapeutic effect in comparison with CBA-EVs. The results of bioinformatics analyses revealed that the differentially expressed exosomal miRNAs participated in multiple biological processes. We identified 80 significantly upregulated and 100 downregulated miRNAs. Moreover, we found that the top 20 differentially expressed exosomal miRNAs connected OA repair to processes such as AMPK signaling, regulation of autophagy, and insulin signaling. Notably, miRNA 221-3p were highly enriched in MRL-Exos and treatment with miR 221-3p inhibitor markedly decreased chondrocyte proliferation and migration induced by CBA-EVs or MRL-EVs in vitro. This is the first study to demonstrate MRL-EVs had a greater therapeutic effect on the treatment of OA than CBA-EVs. This study will hopefully provide new insight into the pathogenesis, prevention, and treatment of OA.
机译:软骨形成的祖细胞(CPC)具有高自我更新能力和软骨潜力。从MRL / MPJ“超壳”小鼠的纯化间充质干细胞(MSCs)的纯化间充质干细胞(MSCs)的内部递送增加,在修复过程中增加骨体积并防止创伤后的关节炎。最近,尽管从MSCs释放的细胞外囊泡被广泛用于治疗OA,但从未报道过来自MRL / MPJ小鼠的CPCs分泌的细胞外囊泡的应用。在这项研究中,我们评估了CPCs分泌的细胞外囊泡的影响来自对照CBA(CBA-EVS)和MRL / MPJ小鼠(MRL-EVS)的鼠软骨细胞的增殖和迁移。如果CBA-EVS和MRL-eV的每周内关节内注射,我们也在此处确定,在小鼠中修复和再生外科诱导的模型。通过流式细胞术检测CPC表面标志物。使用超滤方法分离CBA-EVS和MRL-EV。纳米粒子跟踪分析,透射电子显微镜和蛋白质印迹用于鉴定细胞外囊泡。 CBA-eV和MRL-EV在内侧弯月面(DMM)诱导的OA的外科稳定化的小鼠模型中,组织学和免疫组织化学分析用于评估外出注射的疗效。我们使用miRNA-SEQ分析来分析来自CBA-EVS的外出miRNA的表达谱以及MRL-EV。用于评估CBA-EVS和MRL-EVS分别对小鼠软骨细胞增殖和迁移的影响。同时,特定的RNA抑制剂评估候选miRNA在CPC-EV诱导的软骨细胞功能调节中的作用。 CBA-EVS和MRL-EV均刺激软骨细胞增殖和迁移,但MRL-EV施加比CBA-EVS更强。在体内研究中也观察到类似的结果,表明注射CBA-EVS或MRL-EVS减毒OA,但与CBA-EVS相比,MRL-EVS显示出优异的治疗效果。生物信息学分析的结果表明,差异表达的外泌体miRNA参与了多种生物过程。我们确定了80所显着上调和100个下调的miRNA。此外,我们发现前20个差异表达的外泌体miRNA连接OA修复到诸如AMPK信号传导,自噬调节和胰岛素信号传导的过程中的修复。值得注意的是,MiRNA 221-3P在MRL-EXOS中高度富集,并用MIR 221-3P抑制剂治疗显着降低了CBA-EVS或MRL-EVS在体外诱导的软骨细胞增殖和迁移。这是第一项证明MRL-EV对OA的治疗比CBA-EV的治疗更大的治疗效果。本研究希望能够对OA的发病机制,预防和治疗提供新的洞察。

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