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Cyclic, mechanical compression enhances chondrogenesis of mesenchymal progenitor cells in tissue engineering scaffolds

机译:循环,机械压缩增强组织工程支架中间充质祖细胞的软骨菌

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The effects of cyclic, mechanical compression on human bone marrow-derived mesenchymal progenitor cells undergoing chondrogenic differentiation were examined in this study, Mesenchymal progenitor cells were injected into cylindrical biodegradable scaffolds (hyaluronan-gelatin composites), cultured in a defined, serum-free chondrogenic medium and subjected to cyclic, mechanical compression. Scaffolds were loaded for 4 hours daily in the first 7 days of culture. At 1, 7, 14 and 21 days of culture, scaffolds were harvested for reverse transcriptase Polymerase Chain Reaction (RT-PCR), histology, quantitative DNA, proteoglycan and collagen analysis. Scaffolds loaded for 7 days showed a significant upregulation especially of chondrogenic markers (type II collagen, aggrecan; p < 0.0001) No significant difference could be found for DNA content between loaded samples and unloaded controls,. At day 1 in culture no significant differences in proteoglycan- and collagen contents could be detected between unloaded and loaded samples After 21 days the proteoglycan (p < 0 001) and collagen contents (p < 0 0001) were significantly higher in the loaded samples compared to unloaded controls By histological analysis (toluidine blue) a higher amount of proteoglycan-rich, extracellular matrix production throughout the matrix could be detected for loaded samples compared to unloaded controls. This study indicates that cyclic, mechanical compression enhances the expression of chondrogenic markers in mesenchymal progenitor cells differentiated in vitro resulting in an increased cartilaginous matrix formation, and suggests that mechanical forces may play an important role in cartilage repair.
机译:在本研究中检查了在本研究中进行了经历过软化细胞分化的人骨髓衍生的间充质祖细胞的影响,将间充质祖细胞注射到圆柱形生物降解的支架(透明质酸 - 明胶复合材料)中,在无血清软骨内培养培养基并经受循环,机械压缩。在培养的前7天内每天装载支架4小时。在培养的1,7,14和21天,收获支架,用于逆转录酶聚合酶链反应(RT-PCR),组织学,定量DNA,蛋白多糖和胶原分析。装载7天的支架表明,特别是软骨形成标记物(II型胶原蛋白,聚糖; P <0.0001)没有显着差异,可以在负载样品和卸载控制之间进行DNA含量没有显着差异。在第1天,在21天后,可以在卸载和加载的样品之间没有检测蛋白多糖和胶原蛋白含量的显着差异,并且在加载的样品中显着高于蛋白多糖(P <0 001)和胶原含量(P <0 0001)显着较高通过组织学分析(甲苯胺蓝)卸载对照,与卸载的对照相比,可以检测整个基质的富含蛋白转基因的富含蛋白转基因的细胞外基质产生。该研究表明,循环,机械压缩增强了在体外分化的间充质祖细胞中有软骨菌标志物的表达,导致增加的软骨基质形成增加,并表明机械力可能在软骨修复中发挥重要作用。

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