首页> 外文会议>Computational Intelligence for Measurement Systems and Applications, 2009. CIMSA '09 >Modeling and fabrication of electrospun polymer nanofibers with tailored architectures for tissue engineering scaffold applications
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Modeling and fabrication of electrospun polymer nanofibers with tailored architectures for tissue engineering scaffold applications

机译:用于组织工程支架应用的具有定制架构的电纺聚合物纳米纤维的建模和制造

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By using finite element method (FEM), nanofibers' deposition behavior including the orientation and alignment of nanofibers that are approaching to fiber collectors was simulated and systematically investigated in term of the effects of electrostatic field. Based on the simulation results, we have experimentally demonstrated that Poly (epsiv-caprolactrone) (PCL) nanofibers with various disired patterns and ordered architectures can be prepared using predesigned fiber collectors. When cultured with mouse osteoblastic cell line (MC3T3-E1), it was found that the cells grew and elongated along the fiber orientation directions, and the results cellular organization and distribution mimicked the topological structures of the PCL nanofiber scaffolds. These results indicated that electrospun nanofiber scaffolds with tailored architechtures and patterns hold potential for engineering functional tissues or organs, where an ordered cellular organization is essential.
机译:通过使用有限元方法(FEM),模拟并系统地研究了静电场效应,从而研究了纳米纤维的沉积行为,包括纳米纤维的取向和排列方式,这些行为正接近纤维收集器。基于模拟结果,我们已通过实验证明,可以使用预先设计的纤维收集器来制备具有各种不良图案和有序结构的聚(ε-己内酯)(PCL)纳米纤维。当与小鼠成骨细胞系(MC3T3-E1)培养时,发现细胞沿纤维取向方向生长并伸长,结果细胞的组织和分布模仿了PCL纳米纤维支架的拓扑结构。这些结果表明,具有量身定制的结构和样式的电纺纳米纤维支架具有工程化功能组织或器官的潜力,而有序的细胞组织至关重要。

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