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Direct-write highly aligned chitosan-poly(ethylene oxide) nanofiber patterns for cell morphology and spreading control

机译:直接写入高度对齐的壳聚糖-聚环氧乙烷纳米纤维图案可用于细胞形态学和扩散控制

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摘要

Near-field electrospinning has been demonstrated to be able to achieve direct-write and highly aligned chitosan nanofibers (CNF) with prescribed positioning density. Cell spreading in preferential direction could be observed on parallel-aligned nanofibers, and the CNF patterns were capable of guiding cell extension when the distances between them are 20 and 100 μm, respectively. Alignment of the cells was characterized according to their elongation and orientation using the fast Fourier transform data and binary image analysis. Parallel CNF indicates that the alignment values sequentially increased as a function of positioning density such that incrementally more aligned cells were closely related to the increasing CNF positioning density. These maskless, low-cost, and direct-write patterns can be facily fabricated and will be a promising tool to study cell-based research such as cell adhesion, spreading, and tissue architecture.
机译:已证明近场静电纺丝能够以规定的定位密度实现直写和高度对齐的壳聚糖纳米纤维(CNF)。在平行排列的纳米纤维上可以观察到细胞在优先方向上的扩散,并且当它们之间的距离分别为20和100μm时,CNF图案能够引导细胞扩展。使用快速傅立叶变换数据和二进制图像分析,根据细胞的伸长率和方向来表征细胞的排列。平行CNF表示对齐值随定位密度的变化而顺序增加,从而使更多对齐的单元格与增加的CNF定位密度密切相关。这些无掩模,低成本和直接写入的图案可以轻松制造,将成为研究基于细胞的研究(如细胞粘附,扩散和组织结构)的有前途的工具。

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