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Comparison of cell behavior on pva/pva-gelatin electrospun nanofibers with random and aligned configuration

机译:比较pva / pva-明胶电纺纳米纤维在随机排列和对齐排列下的细胞行为

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摘要

Electrospinning technique is able to create nanofibers with specific orientation. Poly(vinyl alcohol) (PVA) have good mechanical stability but poor cell adhesion property due to the low affinity of protein. In this paper, extracellular matrix, gelatin is incorporated into PVA solution to form electrospun PVA-gelatin nanofibers membrane. Both randomly oriented and aligned nanofibers are used to investigate the topography-induced behavior of fibroblasts. Surface morphology of the fibers is studied by optical microscopy and scanning electron microscopy (SEM) coupled with image analysis. Functional group composition in PVA or PVA-gelatin is investigated by Fourier Transform Infrared (FTIR). The morphological changes, surface coverage, viability and proliferation of fibroblasts influenced by PVA and PVA-gelatin nanofibers with randomly orientated or aligned configuration are systematically compared. Fibroblasts growing on PVA-gelatin fibers show significantly larger projected areas as compared with those cultivated on PVA fibers which p-value is smaller than 0.005. Cells on PVA-gelatin aligned fibers stretch out extensively and their intracellular stress fiber pull nucleus to deform. Results suggest that instead of the anisotropic topology within the scaffold trigger the preferential orientation of cells, the adhesion of cell membrane to gelatin have substantial influence on cellular behavior.
机译:电纺技术能够产生具有特定取向的纳米纤维。聚乙烯醇(PVA)具有良好的机械稳定性,但由于蛋白质的亲和力较低,因此细胞粘附性能较差。在本文中,将细胞外基质明胶掺入PVA溶液中,以形成电纺PVA明胶纳米纤维膜。随机取向和排列的纳米纤维均用于研究由地形引起的成纤维细胞行为。通过光学显微镜和扫描电子显微镜(SEM)结合图像分析研究了纤维的表面形态。通过傅里叶变换红外(FTIR)研究了PVA或PVA明胶中的官能团组成。系统地比较了随机取向或排列的PVA和PVA-明胶纳米纤维对成纤维细胞的形态变化,表面覆盖,成活性和增殖的影响。与在PVA纤维上培养的p值小于0.005的成纤维细胞相比,在PVA-明胶纤维上生长的成纤维细胞显示出明显更大的投影面积。 PVA-明胶排列的纤维上的细胞广泛伸展,其细胞内应力纤维拉动核变形。结果表明,代替支架内的各向异性拓扑结构触发细胞的优先取向,细胞膜对明胶的粘附对细胞行为具有实质性影响。

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