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Material-induced chondrogenic differentiation of mesenchymal stem cells is material-dependent

机译:材料诱导的间充质干细胞的软骨分化是材料依赖的

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摘要

Certain materials may mimic natural cartilage to provide an amenable cellular microenvironment for the chondrogenic differentiation of mesenchymal stem cells. The chondrogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) has been demonstrated to be induced by collagen-based hydrogels in vivo, but whether the induction is material-driven or self-differentiation has not been elucidated. In the present study, BMSCs were encapsulated in porous materials, namely, a biphasic calcium phosphate ceramic (BCP), silk fibroin protein matrix (SFP) and collagen sponge (CS), to further study the chondrogenic effects of various materials. Diffusion chambers that allow the body fluid to permeate and deter the host cells from invasion were also loaded with the cell-scaffold constructs. Chambers containing the scaffold-BMSC composites were implanted subcutaneously in the dorsa of rabbits. The specimens in the chamber were harvested for histological and immunohistochemical analyses eight weeks after implantation. The results showed that no chondrogenic differentiation of the BMSCs occurred when the BMSCs were encapsulated in BCP, SFP and CS, indicating that chondrogenesis induced by materials is material-dependent and that these particular porous materials are not suitable for inducing chondrogenesis. However, the diffusion chamber was effective in preventing host immune rejection, host cell invasion and vascular invasion. The results are likely to serve as a valuable clinical reference when selecting an appropriate scaffold for cartilage repair.
机译:某些物质可能会模仿天然软骨,为间充质干细胞的软骨分化提供适宜的细胞微环境。骨髓间充质干细胞(BMSCs)的软骨分化已被证明是在体内由基于胶原的水凝胶诱导的,但尚未阐明诱导是材料驱动的还是自分化的。在本研究中,将BMSCs包裹在多孔材料中,即双相磷酸钙陶瓷(BCP),丝素蛋白基质(SFP)和胶原海绵(CS),以进一步研究各种材料的软骨形成作用。还允许细胞液渗透并阻止宿主细胞入侵的扩散室也装有细胞支架构建体。将含有支架-BMSC复合物的腔室皮下植入兔的背部。植入后八周,收集室中的标本进行组织学和免疫组化分析。结果表明,当将BMSCs封装在BCP,SFP和CS中时,没有发生BMSCs的软骨分化,这表明材料诱导的软骨形成是材料依赖性的,并且这些特定的多孔材料不适合诱导软骨生成。然而,扩散室在预防宿主免疫排斥,宿主细胞入侵和血管入侵方面是有效的。当选择合适的支架进行软骨修复时,这些结果可能会成为有价值的临床参考。

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