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首页> 外文期刊>International journal of molecular medicine >Xenogeneic chondrocytes promote stable subcutaneous chondrogenesis of bone marrow-derived stromal cells.
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Xenogeneic chondrocytes promote stable subcutaneous chondrogenesis of bone marrow-derived stromal cells.

机译:异种软骨细胞促进骨髓源性基质细胞的稳定皮下软骨形成。

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摘要

The local microenvironment may change the ultimate fate of engineered cartilage differentiated from bone marrow stromal cells (BMSCs) after subcutaneous implantation. Chondrogenically differentiated BMSCs directed by growth factors or low-intensity ultrasound are apt to fibrose or vascularize in the subcutaneous environment, while BMSCs implanted in articular cartilage defects can form stable cartilage. We hypothesized that chondrocytes would provide an ideal chondrogenic environment, and thus promote the maintenance of the chondrocytic phenotype in ectopia. To test this hypothesis, we developed a new method to promote chondrocyte development from BMSCs in a chondrogenic environment produced by xenogeneic chondrocytes and compared the subcutaneous chondrogenesis of BMSCs mediated by xenogeneic chondrocytes with that produced by growth factors. These results indicate that subcutaneous chondrogenesis of BMSCs directed by xenogeneic chondrocytes is more effective than that induced by growth factors. BMSCs induced by xenogeneic chondrocytes formed relatively mature cartilage before or after implantation, following 4 weeks of culture, which reduced the induction time in vitro and led to maintenance of a stable cartilage phenotype after subcutaneous implantation.
机译:皮下植入后,局部微环境可能改变与骨髓基质细胞(BMSC)分化的工程软骨的最终命运。由生长因子或低强度超声引导的软骨分化的BMSC在皮下环境中易于纤维化或血管化,而植入关节软骨缺损的BMSC可以形成稳定的软骨。我们假设软骨细胞会提供理想的软骨形成环境,从而促进维持近视眼中的软骨细胞表型。为了验证这一假设,我们开发了一种新方法,可在异种软骨细胞产生的软骨形成环境中促进BMSC的软骨细胞发育,并将异种软骨细胞介导的BMSC的皮下软骨形成与生长因子产生的软骨细胞进行了比较。这些结果表明异种软骨细胞指导的BMSC的皮下软骨形成比生长因子诱导的更有效。由异种软骨细胞诱导的BMSC在植入前或植入后,培养4周后形成相对成熟的软骨,这减少了体外诱导时间,并导致皮下植入后维持稳定的软骨表型。

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