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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Cartilage-derived extracellular matrix extract promotes chondrocytic phenotype in three-dimensional tissue culture
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Cartilage-derived extracellular matrix extract promotes chondrocytic phenotype in three-dimensional tissue culture

机译:软骨来源的细胞外基质提取物在三维组织培养中促进软骨细胞表型

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摘要

Cell transplantation is a promising regenerative therapy for cartilage degeneration. However, obtaining sufficient numbers of cells for this purpose is a challenge, due a lack of autologous donor tissue and the difficulty of culturing chondrocytes in vitro. Tissue engineering strategies that induce or maintain chondrocytic phenotype may solve these problems by (1) broadening the range of available donor tissue, and (2) facilitating the expansion of these cells while controlling phenotypic drift. In this study, bone marrow-derived mesenchymal stem cells (MSCs) and cartilage-derived cells (CDCs) were cultured on composite hydrogels containing agarose and homogenized cartilage extracellular matrix (ECM). MSCs cultured on agarose-ECM scaffolds did not show significant signs of chondrogenic differentiation in the absence of additional cues. However, CDCs cultured on agarose-ECM scaffolds proliferated more rapidly than their ECM-free counterparts and MSCs, while retaining chondrocytic morphology. These results were corroborated via expression of cartilage marker genes: in autologous constructs, SOX 9 expression was upregulated by 12.6 +/- 5.3-fold, and COL II was upregulated by 2.0 +/- 0.3-fold. Agarose-ECM composite hydrogels are therefore useful for expanding partially differentiated CDCs for applications in regenerative medicine.
机译:细胞移植是用于软骨变性的有希望的再生疗法。然而,由于缺乏自体供体组织和体外培养软骨细胞的困难,获得足够数量的细胞用于此目的是一个挑战。诱导或维持软骨细胞表型的组织工程策略可通过以下方法解决这些问题:(1)拓宽可用供体组织的范围,(2)在控制表型漂移的同时促进这些细胞的扩增。在这项研究中,骨髓来源的间充质干细胞(MSCs)和软骨来源的细胞(CDCs)在含有琼脂糖和均质软骨细胞外基质(ECM)的复合水凝胶上培养。在没有其他提示的情况下,在琼脂糖-ECM支架上培养的MSC没有显示出明显的软骨分化迹象。然而,与无ECM的对应物和MSC相比,在琼脂糖-ECM支架上培养的CDC增殖更快,同时保留了软骨形态。这些结果通过软骨标记基因的表达得到了证实:在自体构建体中,SOX 9的表达上调了12.6 +/- 5.3倍,COL II的上调了2.0 +/- 0.3倍。因此,琼脂糖-ECM复合水凝胶可用于扩展部分分化的CDC,用于再生医学。

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