Wang Shuo, Zhong Shaoping, Lim Chwee Teck, Nie Hemin
Department of Biomedical Engineering, College of Biology, Hunan University, Yuelu Mountain, Changsha 410082, China.
J Mater Chem B. 2015 Apr 28;3(16):3358-3366. doi: 10.1039/c5tb00026b. Epub 2015 Mar 23.
Considerable research has been focused on the utilization of electrospun ultrafine fibers to construct biomimetic scaffolds for tissue engineering applications. However, there is still a limited understanding of the effects of fiber alignment on stem cells-fibrous scaffold interactions and their role in deciding the fate of stem cells and scaffolds. Here, we tracked the real-time interactions between mesenchymal stem cells (MSCs) and aligned/non-aligned electrospun PCL-gelatin ultrafine fibers using time-lapse microscopy, and investigated the effects of fiber alignment on the behaviour of cell spreading, migration and differentiation, and scaffold remodeling. Cells were found to spread and migrate with increased velocity in the direction of aligned fibers as compared to non-aligned ones. Moreover, enhanced interactions between cells and aligned fibers were found to facilitate the infiltration of cells into the interior of fibrous constructs, which further led to enhanced micro-integration and scaffold remodeling as well as increased gene expression of late osteogenic markers as compared to non-aligned fibrous constructs. This study advances our understanding of the effects of fiber alignment on stem cells-fibrous scaffold interactions, and will facilitate the design of fibrous scaffolds with enhanced cell-matrix interactions for tissue engineering applications.
大量研究聚焦于利用电纺超细纤维构建用于组织工程应用的仿生支架。然而,对于纤维排列对干细胞与纤维支架相互作用的影响及其在决定干细胞和支架命运中的作用,人们的了解仍然有限。在此,我们使用延时显微镜追踪间充质干细胞(MSCs)与排列/未排列的电纺聚己内酯-明胶超细纤维之间的实时相互作用,并研究纤维排列对细胞铺展、迁移和分化行为以及支架重塑的影响。与未排列的纤维相比,发现细胞在排列纤维方向上以更快的速度铺展和迁移。此外,发现细胞与排列纤维之间增强的相互作用促进细胞向纤维构建体内部的浸润,这进一步导致与未排列纤维构建体相比,微整合和支架重塑增强以及晚期成骨标志物的基因表达增加。这项研究增进了我们对纤维排列对干细胞与纤维支架相互作用影响的理解,并将有助于设计具有增强细胞-基质相互作用的纤维支架用于组织工程应用。