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首页> 外文期刊>Biomedical materials >Improved cellular infiltration into nanofibrous electrospun cross-linked gelatin scaffolds templated with micrometer-sized polyethylene glycol fibers
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Improved cellular infiltration into nanofibrous electrospun cross-linked gelatin scaffolds templated with micrometer-sized polyethylene glycol fibers

机译:改善细胞向以微米级聚乙二醇纤维为模板的纳米纤维电纺交联明胶支架中的渗透

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摘要

Gelatin-based nanofibrous scaffolds with a mean fiber diameter of 300 nm were prepared with and without micrometer-sized polyethylene glycol (PEG) fibers that served as sacrificial templates. Upon fabrication of the scaffolds via electrospinning, the gelatin fibers were crosslinked with glutaraldehyde, and the PEG templates were removed using tert-butanol to yield nanofibrous scaffolds with pore diameters ranging from 10 to 100 μm, as estimated with mercury intrusion porosimetry. Non-templated gelatin-based nanofibrous matrices had an average pore size of 1 μm. Fibroblasts were seeded onto both types of the gelatin-based nanofibrous surfaces and cultured for 14 days. For comparative purposes, chitosan-based and polyurethane-based macroporous scaffolds with pore sizes of 100 and 170 μm, respectively, were also included. The number of cells as a function of the depth into the scaffold was judged and quantitatively assessed using nuclei staining. Cell penetration up to a depth of 250 and 90 μm was noted in gelatin scaffolds prepared with sacrificial templates and gelatin-only nanofibrous scaffolds. Noticeably, scaffold preparation protocol presented here allowed the structural integrity to be maintained even with high template content (95%) and can easily be extended toward other classes of electrospun polymer matrices for tissue engineering.
机译:在具有和不具有用作牺牲模板的微米级聚乙二醇(PEG)纤维的情况下,制备平均纤维直径为300 nm的基于明胶的纳米纤维支架。通过静电纺丝制造支架后,将明胶纤维与戊二醛交联,并使用叔丁醇去除PEG模板,以产生孔径为10至100μm的纳米纤维支架,如通过压汞法测得的。未模板的基于明胶的纳米纤维基质的平均孔径为1μm。将成纤维细胞接种到两种类型的基于明胶的纳米纤维表面上,并培养14天。为了进行比较,还包括孔径分别为100和170μm的壳聚糖基和聚氨酯基大孔支架。使用细胞核染色判断并定量评估细胞数量,作为进入支架的深度的函数。在使用牺牲模板和仅使用明胶的纳米纤维支架制备的明胶支架中,注意到细胞穿透深度达到250和90μm。值得注意的是,此处提出的支架制备方案即使在模板含量高(95%)的情况下也可以保持结构完整性,并且可以轻松地扩展到用于组织工程的其他类型的电纺聚合物基体。

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