纳米壳聚糖表面用于研究细胞行为

Chung-Yao Yang, Chun-Yen Sung, J. Yeh
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引用次数: 1

摘要

本文介绍了一种采用溶液铸造和蚀刻相结合的方法,在硅模上制备壳聚糖膜的纳米级特征。用三种不同分子量的壳聚糖粉末对成型后的形貌进行了表征。三种不同分子量的杨氏模量(120、185和250 kDa)在空气中的杨氏模量约为6 GPa,在介质中的杨氏模量约为5 MPa。纳米织构的宽度为250 nm,深度为200 nm。将人乳腺癌细胞MCF-7和high -82成纤维细胞培养在纳米纹理壳聚糖表面,两种细胞都能在特定区域形成图案。结果表明,细胞更倾向于粘附在平面壳聚糖表面,而不是纳米结构的壳聚糖表面。这种纳米壳聚糖表面可用于生物医学设备、生物学和组织工程等生物相关领域的细胞发育控制。
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Nanotextured chitosan surfaces for studying cell behaviors
This paper describes an easy method to fabricate nanoscale features on chitosan membranes from a silicon mold through using a combination of solution casting and etching process. Three different molecular weight chitosan powders were used to evaluate the topography of nanoscale features after molding process. The Young's modulus of three different molecular weight (120, 185 and 250 kDa) are almost the same in air with a value about 6 GPa and in medium with a value about 5 MPa. The size of the nanotexture is 250 nm in width and 200 nm in depth. Human breast cancer cells MCF-7 and HIG-82 fibroblasts were cultured on patterned nanotextured chitosan surfaces and both cells can be patterned on specific regions. The results exhibited the cells preferred to adhere on flat chitosan surfaces than on nanotextured chitosan surfaces. This nanotextured chitosan surfaces could be used for controlling cell development in bio-relevant applications, such biomedical devices, biology and tissue engineering.
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