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Incorporating Protein Gradient into Electrospun Nanofibers As Scaffolds for Tissue Engineering

机译:将蛋白质梯度整合到电纺纳米纤维中作为组织工程的支架

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We report a simple but straightforward approach to produce nanofiber scaffolds with incorporated protein gradient for cell culture studies. Standard electrospinning technique was used to fabricate a high-porosity random hber matrix. Protein molecules were then deposited in the fiber matrix by a controlled filling method, allowing the generation of a concentration gradient on the sample. When cultured with NIH 3T3 cells, it was found that the cell population on the fiber matrix depends strongly on the protein concentration. The cell morphology observation also showed the effect of the hybrid system containing both a fibrillar network and surface-coated protein gradient, revealing a different behavior of cell spreading in comparison with the experimental data of cell culture without fibers or without protein gradient
机译:我们报告了一种简单而直接的方法来生产具有结合蛋白梯度的纳米纤维支架,用于细胞培养研究。使用标准的静电纺丝技术来制造高孔隙率的随机hber矩阵。然后通过控制填充方法将蛋白质分子沉积在纤维基质中,从而在样品上产生浓度梯度。当与NIH 3T3细胞一起培养时,发现纤维基质上的细胞数量强烈依赖于蛋白质浓度。细胞形态学观察还显示了同时包含原纤维网络和表面包被蛋白梯度的杂交系统的作用,与无纤维或无蛋白梯度的细胞培养实验数据相比,揭示了细胞扩散的不同行为

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