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Patterning the mechanical properties of hydrogen silsesquioxane films using electron beam irradiation for application in mechano cell guidance

机译:使用电子束辐照图案化氢倍半硅氧烷氢膜的机械性能以用于机械细胞引导

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摘要

Hydrogen silsesquioxane (HSQ) is a material with the potential for studying the effect of surface stiffness on stem cell differentiation. Here, the effects of electron beam dose on the topography and the mechanical properties of HSQ obtained with or without trimethylamine (TMA) development are characterised by atomic force microscopy imaging and indentation. A correlation between the surface stiffness (uniform across the sample) and electron beam exposure is observed. Surface roughness of HSQ samples developed in TMA decreases exponentially with increasing electron beam exposure. Surface coating with plasma polymerised allylamine (ppAAm) leads to an overall decrease in stiffness values. However, the increase in surface stiffness with increasing electron beam exposure is still evident. The ppAAm coating is shown to facilitate human mesenchymal stem cell adhesion.
机译:氢倍半硅氧烷(HSQ)是一种具有潜力的材料,可用于研究表面硬度对干细胞分化的影响。在这里,电子束剂量对形貌的影响以及通过或不通过三甲胺(TMA)显影获得的HSQ的机械性能的特征在于原子力显微镜成像和压痕。观察到表面刚度(整个样品均匀)和电子束暴露之间的相关性。在TMA中开发的HSQ样品的表面粗糙度随着电子束曝光量的增加呈指数下降。用等离子体聚合的烯丙胺(ppAAm)进行的表面涂层会导致刚度值整体下降。然而,随着电子束暴露的增加,表面刚度的增加仍然是明显的。 ppAAm涂层可促进人间充质干细胞粘附。

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