星形胶质细胞
聚丙烯酰胺
涂层
生物医学工程
材料科学
生物物理学
延伸率
化学
复合材料
极限抗拉强度
生物
医学
高分子化学
神经科学
中枢神经系统
作者
Pouria Moshayedi,Luciano da Fontoura Costa,Andreas Christ,Stéphanie P. Lacour,James W. Fawcett,Jochen Guck,Kristian Franze
标识
DOI:10.1088/0953-8984/22/19/194114
摘要
Cells are able to detect and respond to mechanical cues from their environment. Previous studies have investigated this mechanosensitivity on various cell types, including neural cells such as astrocytes. In this study, we have carefully optimized polyacrylamide gels, commonly used as compliant growth substrates, considering their homogeneity in surface topography, mechanical properties, and coating density, and identified several potential pitfalls for the purpose of mechanosensitivity studies. The resulting astrocyte response to growth on substrates with shear storage moduli of G' = 100 Pa and G' = 10 kPa was then evaluated as a function of coating density of poly-D-lysine using quantitative morphometric analysis. Astrocytes cultured on stiff substrates showed significantly increased perimeter, area, diameter, elongation, number of extremities and overall complexity if compared to those cultured on compliant substrates. A statistically significant difference in the overall morphological score was confirmed with an artificial intelligence-based shape analysis. The dependence of the cells' morphology on PDL coating density seemed to be weak compared to the effect of the substrate stiffness and was slightly biphasic, with a maximum at 10–100 µg ml − 1 PDL concentration. Our finding suggests that the compliance of the surrounding tissue in vivo may influence astrocyte morphology and behavior.
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