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用于增强间充质干细胞的机械响应和腱形成的取向纤维支架。

Aligned fibrous scaffolds for enhanced mechanoresponse and tenogenesis of mesenchymal stem cells.

机构信息

Department of Bioengineering, National University of Singapore, Singapore, Singapore.

出版信息

Tissue Eng Part A. 2013 Jun;19(11-12):1360-72. doi: 10.1089/ten.TEA.2012.0279. Epub 2013 Mar 29.

Abstract

Topographical cell guidance has been utilized as a tissue-engineering technique to produce aligned cellular orientation in the regeneration of tendon- and ligament-like tissues. Other studies have investigated the effects of dynamic culture to achieve the same end. These works have, however, been limited to two-dimensional cultures, with focus given to the effects from the stimuli independently. The understanding of their combined effects in the tenogenic differentiation of mesenchymal stem cells (MSCs) has also been lacking. This study investigated the synergistic effects of mechanical stimulation on aligned MSCs in a three-dimensional (3D) aligned silk fibroin (SF) hybrid scaffold. Enhanced tenogenesis of seeded MSCs was observed in the scaffold group with aligned SF electrospun fibers (AL) under static culture conditions, as evidenced by the upregulation in expression and production of tendon/ligament-related proteins. The intensity and onset of these differentiative markers were increased and advanced, respectively, under dynamic culture conditions, indicative of an accelerated matrix deposition and remodeling process. Consequently, the tensile properties of dynamically cultured AL were significantly improved. We thus propose that the aligned hybrid SF scaffold facilitates mechanoactivity and tenogenic differentiation of MSCs by intensifying the positive effects of mechanical stimulation in a 3D environment.

摘要

拓扑细胞导向已被用作组织工程技术,以在肌腱和韧带样组织的再生中产生细胞的定向排列。其他研究也探讨了动态培养的效果,以达到同样的目的。然而,这些工作仅限于二维培养,并侧重于刺激物的独立影响。对于它们在间充质干细胞(MSCs)的肌腱分化中的联合效应的理解也缺乏。本研究探讨了机械刺激对三维(3D)定向丝素纤维(SF)混合支架中定向 MSC 的协同作用。在静态培养条件下,具有定向 SF 静电纺丝纤维(AL)的支架组中观察到种子 MSC 的增强肌腱/韧带形成,这表现为与肌腱/韧带相关的蛋白的表达和产生上调。在动态培养条件下,这些分化标志物的强度和起始时间分别增加和提前,表明基质沉积和重塑过程加速。因此,动态培养的 AL 的拉伸性能得到了显著改善。因此,我们提出,定向混合 SF 支架通过在 3D 环境中增强机械刺激的积极作用,促进 MSC 的机械活性和肌腱分化。

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