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Chm-1 gene-modified bone marrow mesenchymal stem cells maintain the chondrogenic phenotype of tissue-engineered cartilage

机译:Chm-1基因修饰的骨髓间充质干细胞维持组织工程软骨的软骨形成表型

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Background Marrow mesenchymal stem cells (MSCs) can differentiate into specific phenotypes, including chondrocytes, and have been widely used for cartilage tissue engineering. However, cartilage grafts from MSCs exhibit phenotypic alternations after implantation, including matrix calcification and vascular ingrowth. Methods We compared chondromodulin-1 (Chm-1) expression between chondrocytes and MSCs. We found that chondrocytes expressed a high level of Chm-1. We then adenovirally transduced MSCs with Chm-1 and applied modified cells to engineer cartilage in vivo. Results A gross inspection and histological observation indicated that the chondrogenic phenotype of the tissue-engineered cartilage graft was well maintained, and the stable expression of Chm-1 was detected by immunohistological staining in the cartilage graft derived from the Chm-1 gene-modified MSCs. Conclusions Our findings defined an essential role for Chm-1 in maintaining chondrogenic phenotype and demonstrated that Chm-1 gene-modified MSCs may be used in cartilage tissue engineering.
机译:背景技术骨髓间充质干细胞(MSC)可以分化为特定的表型,包括软骨细胞,并已广泛用于软骨组织工程。然而,来自MSC的软骨移植物在植入后表现出表型改变,包括基质钙化和血管向内生长。方法我们比较了软骨细胞和MSC之间的软骨调节蛋白1(Chm-1)表达。我们发现软骨细胞表达高水平的Chm-1。然后,我们用Chm-1腺病毒转导了MSC,并将修饰的细胞应用于体内工程化软骨。结果肉眼观察和组织学观察表明,组织工程软骨移植物的软骨形成表型得到了很好的维持,并通过免疫组织学染色检测了Chm-1基因修饰的MSCs软骨移植物中Chm-1的稳定表达。 。结论我们的发现确定了Chm-1在维持软骨形成表型中的重要作用,并证明了Chm-1基因修饰的MSCs可用于软骨组织工程。

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