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Influence of culture conditions and extracellular matrix alignment on human mesenchymal stem cells invasion into decellularized engineered tissues

机译:培养条件和细胞外基质排列对人间充质干细胞侵入脱细胞工程组织的影响

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摘要

The variables that influence the in vitro recellularization potential of decellularized engineered tissues, such as cell culture conditions and scaffold alignment, have yet to be explored. The goal of this work was to explore the influence of insulin and ascorbic acid and extracellular matrix (ECM) alignment on the recellularization of decellularized engineered tissue by human mesenchymal stem cells (hMSCs). Aligned and non‐aligned tissues were created by specifying the geometry and associated mechanical constraints to fibroblast‐mediated fibrin gel contraction and remodelling using circular and C‐shaped moulds. Decellularized tissues (matrices) of the same alignment were created by decellularization with detergents. Ascorbic acid promoted the invasion of hMSCs into the matrices due to a stimulated increase in motility and proliferation. Invasion correlated with hyaluronic acid secretion, α‐smooth muscle actin expression and decreased matrix thickness. Furthermore, hMSCs invasion into aligned and non‐aligned matrices was not different, although there was a difference in cell orientation. Finally, we show that hMSCs on the matrix surface appear to differentiate toward a smooth muscle cell or myofibroblast phenotype with ascorbic acid treatment. These results inform the strategy of recellularizing decellularized engineered tissue with hMSCs. © 2015 The Authors Journal of Tissue Engineering and Regenerative Medicine Published by John Wiley & Sons Ltd.
机译:影响脱细胞工程组织的体外再细胞化潜力的变量,例如细胞培养条件和支架排列,尚待探索。这项工作的目的是探讨胰岛素,抗坏血酸和细胞外基质(ECM)排列对人间充质干细胞(hMSCs)对脱细胞工程组织的再细胞化的影响。通过指定几何形状和相关的纤维束介导的纤维蛋白凝胶收缩和使用圆形和C型模具重塑的机械约束条件,可以创建对齐和不对齐的组织。通过去污剂的去细胞作用产生了相同排列的去细胞组织(基质)。抗坏血酸由于刺激的运动性和增殖增加而促进了hMSC的侵袭。侵袭与透明质酸分泌,α-平滑肌肌动蛋白表达和基质厚度减少有关。此外,尽管在细胞方向上存在差异,但hMSCs进入对齐和不对齐矩阵的侵袭率没有差异。最后,我们显示,在抗坏血酸处理下,基质表面上的hMSC似乎向平滑肌细胞或成肌纤维细胞表型分化。这些结果指导了用hMSC使脱细胞工程组织重新细胞化的策略。 ©2015作者,《组织工程与再生医学杂志》,约翰·威利父子有限公司出版。

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