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首页> 外文期刊>Journal of biomedical materials research, Part A >Dynamic compression combined with SOX-9 overexpression in rabbit adipose-derived mesenchymal stem cells cultured in a three-dimensional gradual porous PLGA composite scaffold upregulates HIF-1 expression
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Dynamic compression combined with SOX-9 overexpression in rabbit adipose-derived mesenchymal stem cells cultured in a three-dimensional gradual porous PLGA composite scaffold upregulates HIF-1 expression

机译:动态压缩结合SOX-9过表达在三维梯度多孔PLGA复合支架中培养的兔脂肪间充质干细胞中上调HIF-1表达

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There is considerable interest in how the fate of adipose-derived stem cells is determined. Physical stimuli play a crucial role in skeletogenesis and in cartilage repair and regeneration. In the present study, we investigated the comparative and interactive effects of dynamic compression and SRY-related high-mobility group box gene-9 (SOX-9) on chondrogenesis of rabbit adipose-derived stem cells in three-dimensional gradual porous PLGA (polylactic-co-glycolic acid) composite scaffolds. Articular cartilage is stratified into zones delineated by characteristic changes in cellular, matrix, and nutritive components. As a consequence, biochemical and biomechanical properties vary greatly between the different zones, giving the tissue its unique structure and, thus, the ability to cope with extreme loading. The effects on development of the cartilage were examined using a combination of computational modeling to predict alterations in biophysical stimuli, detailed morphometric analysis of 3D digital representations. In addition, early chondrogenic differentiation was assessed via real-time PCR of mRNA expression levels for bone- and cartilage-specific gene markers. Our findings define the important role of dynamic compression combined with SOX-9 overexpression during in vitro generation of tissue-engineering cartilage and suggest that a 3D gradual porous PLGA composite scaffold may benefit articular cartilage tissue engineering in cartilage regeneration for better force distribution. (c) 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 3886-3895, 2015.
机译:人们对如何确定脂肪干细胞的命运非常感兴趣。物理刺激在骨骼生成以及软骨修复和再生中起关键作用。在本研究中,我们研究了动态压缩和SRY相关的高迁移率族盒基因9(SOX-9)对兔脂肪衍生干细胞在三维渐变多孔PLGA中的比较和相互作用的影响(聚乳酸-co-乙醇酸)复合支架。关节软骨根据细胞,基质和营养成分的特征变化而分层为多个区域。结果,不同区域之间的生化和生物力学特性差异很大,使组织具有独特的结构,因此具有应付极端负荷的能力。通过使用计算模型的组合来预测对生物物理刺激的变化,3D数字表示的详细形态分析,可以检查对软骨发育的影响。此外,通过实时PCR检测骨和软骨特异性基因标志物的mRNA表达水平来评估早期软骨形成的分化。我们的发现定义了动态压缩结合SOX-9过表达在组织工程软骨体外生成中的重要作用,并表明3D渐进多孔PLGA复合支架可能有益于软骨再生中的关节软骨组织工程,以实现更好的力分布。 (c)2015 Wiley Periodicals,Inc. J Biomed Mater Res Part A:103A:3886-3895,2015年。

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