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首页> 外文期刊>Nanomedicine Journal >Genipin cross-linked electrospun chitosan-based nanofibrous mat as tissue engineering scaffold
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Genipin cross-linked electrospun chitosan-based nanofibrous mat as tissue engineering scaffold

机译:Genipin交联的静电纺丝壳聚糖纳米纤维垫作为组织工程支架

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Objective(s): To improve water stability of electrospun chitosan/ Polyethylene oxide (PEO) nanofibers, genipin, a biocompatible and nontoxic agent, was used to crosslink chitosan based nanofibers. Materials and Methods: Different amounts of genipin were added to the chitosan/PEO solutions, chitosan/PEO weight ratio 90/10 in 80 % acetic acid, and the solutions were then electrospun to form nanofibers. The spun nanofibers were exposed to water vapor to complete crosslinking. The nanofibrous membranes were subjected to detailed analysis by scanning electron microscopy (SEM), Fourier transform infrared-attenuated total reflection (FTIR-ATR) spectroscopy, swelling test, MTT cytotoxicity, and cell attachment. Results: SEM images of electrospun mats showed that genipin-crosslinked nanofibers retained their fibrous structure after immerging in PBS (pH=7.4) for 24 hours, while the uncrosslinked samples lost their fibrous structure, indicating the water stability of genipin-crosslinked nanofibers. The genipin-crosslinked mats also showed no significant change in swelling ratio in comparison with uncrosslinked ones. FTIR-ATR spectrum of uncrosslinked and genipin-crosslinked chitosan nanofibers revealed the reaction between genipin and amino groups of chitosan. Cytotoxicity of genipin-crosslinked nanofibers was examined by MTT assay on human fibroblast cells in the presence of nanofibers extraction media. The genipin-crosslinked nanofibers did not show any toxic effects on fibroblast cells at the lowest and moderate amount of genipin. The fibroblast cells also showed a good adhesion on genipin-crosslinked nanofibers. Conclusion: This electrospun matrix would be used for biomedical applications such as wound dressing and scaffold for tissue engineering without the concern of toxicity.
机译:目的:为了提高静电纺丝的壳聚糖/聚环氧乙烷(PEO)纳米纤维的水稳定性,使用了一种具有生物相容性且无毒的京尼平来交联壳聚糖基纳米纤维。材料和方法:将不同量的京尼平加入壳聚糖/ PEO溶液中,壳聚糖/ PEO的重量比为80/10的90%,然后进行静电纺丝以形成纳米纤维。将纺成的纳米纤维暴露于水蒸气以完成交联。通过扫描电子显微镜(SEM),傅立叶变换红外衰减全反射(FTIR-ATR)光谱,溶胀测试,MTT细胞毒性和细胞附着,对纳米纤维膜进行详细分析。结果:电纺垫的SEM图像显示,经过genipin交联的纳米纤维在PBS(pH = 7.4)中浸泡24小时后仍保留了其纤维结构,而未交联的样品则失去了其纤维结构,表明genipin交联的纳米纤维的水稳定性。与未交联的垫子相比,Genipin交联的垫子也没有显示出明显的溶胀率变化。未交联的和Genipin交联的壳聚糖纳米纤维的FTIR-ATR光谱揭示了Genipin与壳聚糖的氨基之间的反应。在存在纳米纤维提取介质的情况下,通过MTT分析对人成纤维细胞进行了Genipin交联纳米纤维的细胞毒性。 Genipin交联的纳米纤维在最低和中等含量的Genipin时对成纤维细胞没有任何毒性作用。成纤维细胞还与Genipin交联的纳米纤维表现出良好的粘附性。结论:这种电纺基质可用于生物医学应用,例如伤口敷料和组织工程支架,而无需考虑毒性。

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