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Electrophoretic coating of amphiphilic chitosan colloids on regulating cellular behaviour

机译:两亲性壳聚糖胶体的电泳涂层对细胞行为的调控

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摘要

In this communication, we report a facile nanotopographical control over a stainless steel surface via an electrophoretic deposition of colloidal amphiphilic chitosan for preferential growth, proliferation or migration of vascular smooth muscle cells (VSMCs) and human umbilical vein endothelial cells (HUVECs). Atomic force microscopy revealed that the colloidal surface exhibited a deposition time-dependent nanotopographical evolution, wherein two different nanotopographic textures indexed by ‘kurtosis’ (Rkur) value were easily designed, which were termed as ‘sharp’ (i.e. high peak-to-valley texture) surface and ‘flat’ (i.e. low peak-to-valley texture) surface. Cellular behaviour of VSMCs and HUVECs on both surfaces demonstrated topographically dependent morphogenesis, adherent responses and biochemical properties in comparison with bare stainless steel. The formation of a biofunctionalized surface upon a facile colloidal chitosan deposition envisions the potential application towards numerous biomedical devices, and this is especially promising for cardiovascular stents wherein a new surface with optimized texture can be designed and is expected to create an advantageous environment to stimulate HUVEC growth for improved healing performance.
机译:在此交流中,我们报告了通过电泳沉积胶体两亲性壳聚糖对不锈钢表面进行的便捷纳米形貌控制,以优先生长,增殖或迁移血管平滑肌细胞(VSMC)和人脐静脉内皮细胞(HUVEC)。原子力显微镜显示胶体表面表现出与沉积时间有关的纳米形貌演变,其中容易设计以“峰度”(Rkur)值索引的两种不同的纳米形貌,被称为“尖峰”(即高峰谷)纹理)表面和“平坦”(即低的峰谷纹理)表面。与裸露的不锈钢相比,VSMC和HUVEC在两个表面上的细胞行为均表现出与地形有关的形态发生,粘附反应和生化特性。在容易的胶体壳聚糖沉积上形成生物功能化表面可预见其在许多生物医学装置中的潜在应用,这对于心血管支架尤其有希望,在心血管支架中,可以设计具有最佳质地的新表面,并有望创造一个刺激HUVEC的有利环境生长以改善治疗效果。

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