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Injectable ECM hydrogel for delivery of BMSCs enabled full-thickness meniscus repair in an orthotopic rat model

机译:用于递送BMSC的可注射ECM水凝胶在原位大鼠模型中具有全厚度弯月面修复

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摘要

Meniscal injuries have poor intrinsic healing capability and are associated with the development of osteoarthritis. Decellularized meniscus extracellular matrix (mECM) has been suggested to be efficacious for the repair of meniscus defect. However, main efforts to date have been focused on the concentration, crosslinking density and anatomical region dependence of the mECM hydrogels on regulation of proliferation and differentiation of adult mesenchymal stem cells (MSCs) in vitro 2D or 3D culture. A systematic investigation and understanding of the effect of mECM on encapsulated MSCs response and integrative meniscus repair by in vivo rat subcutaneous implantation and orthotopic meniscus injury model will be highly valuable to explore its potential for clinical translation. In this study, we investigated the in situ delivery of rat BMSCs in an injectable mECM hydrogel to a meniscal defect in a SD rat model. Decellularized mECM retained essential proteoglycans and collagens, and significantly upregulated expression of fibrochondrogenic markers by BMSCs versus collagen hydrogel alone in vitro 3D cell culture. When applied to an orthotopic model of meniscal injury in SD rat, mECM is superior than collagen I scaffold in reduction of osteophyte formation and prevention of joint space narrowing and osteoarthritis development as evidenced by histology and micro-CT analysis. Taken together, these results indicate mECM hydrogel is a highly promising carrier to deliver MSCs for long-term repair of meniscus tissue, while preventing the development of osteoarthritis.
机译:半月板损伤具有差的内在愈合能力,与骨关节炎的发展有关。已经提出了脱细胞弯鼻细胞外基质(MECM)对修复弯月面缺陷是有效的。然而,迄今为止的主要努力已经专注于MECM水凝胶对体外2D或3D培养物(MSCs)的增殖和分化调节的浓度,交联密度和解剖区域依赖性。系统调查和对MECM对封装MSCS响应和整合弯月球修复的系统的调查和理解通过体内大鼠皮下植入和原位弯月面损伤模型对探讨其临床翻译潜力非常有价值。在这项研究中,我们研究了在可注射的MECM水凝胶中对大鼠BMSC的原位递送到SD大鼠模型中的半月板缺陷。脱细胞的MECM保留的必需蛋白多糖和胶原蛋白,并在体外3D细胞培养中,BMSCs与胶原蛋白水凝胶显着上调表达纤维素原标记。当应用于SD大鼠的半月板损伤的原位模型时,MECM比胶原蛋白I支架优于减少骨赘的形成和预防关节空间缩小和骨关节炎的发展,其组织学和微型CT分析证明。总之,这些结果表明MECM Hyder凝胶是一种高度有前途的载体,用于提供MSCs的MSC,用于弯月面包组织的长期修复,同时防止骨关节炎的发育。

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