首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Correlation of cell adhesive behaviors on superhydrophobic, superhydrophilic, and micropatterned superhydrophobic/superhydrophilic surfaces to their surface chemistry
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Correlation of cell adhesive behaviors on superhydrophobic, superhydrophilic, and micropatterned superhydrophobic/superhydrophilic surfaces to their surface chemistry

机译:超疏水,超亲水和微图案超疏水/超亲水表面上细胞黏附行为与其表面化学的相关性

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A micropatterned superhydrophobic/superhydrophilic surface was successfully fabricated by plasma CVD and VUV irradiation. Physicochemical properties of the superhydrophobic, superhydrophilic, and superhydrophobic/superhydrophilic surfaces were investigated. The roughness structures on the superhydrophilic surface remained intact compared to those of the superhydrophobic surface. The micropatterned superhydrophobic/superhydrophilic surface was used as a scaffold of cell culture. On the micropatterned surface, the cells attached to the superhydrophilic regions in a highly selective manner, forming circular microarrays of the cells corresponding to the pattern. On the micropatterned surface with pattern distances of 200 μm between superhydrophilic regions, the cells adhered on the superhydrophilic regions and partly extended to the neighboring cells. In contrast, when the pattern distances between the superhydrophilic regions were more than 400 μm, the cells did not extend to the neighboring cells. Cell adhesion behaviors on superhydrophobic and superhydrophilic surfaces were also examined. The cells adhered and proliferated on both superhydrophobic and superhydrophilic surfaces. However, on the superhydrophobic surface, constant contact to facilitate cell division and proliferation was required. On the other hand, the cells easily adhered and proliferated on the superhydrophilic surface immediately after seeding. These differences in cell adhesion behavior induced site-selective cell adhesion on the superhydrophilic regions. Furthermore, protein adsorption behavior that plays an important role in cell adhesion on flat hydrophobic and hydrophilic surface was also examined. The amounts of the protein adsorption on the flat hydrophilic surface were much greater than those on the flat hydrophobic surface.
机译:通过等离子CVD和VUV辐射成功制备了微图案的超疏水/超亲水表面。研究了超疏水,超亲水和超疏水/超亲水表面的理化性质。与超疏水表面相比,超亲水表面上的粗糙度结构保持完整。微图案化的超疏水/超亲水表面被用作细胞培养的支架。在微图案化的表面上,细胞以高度选择性的方式附着到超亲水区域,形成与图案相对应的圆形细胞微阵列。在超亲水区域之间的图案距离为200μm的微图案表面上,细胞粘附在超亲水区域上,并部分延伸到相邻细胞。相反,当超亲水区域之间的图案距离大于400μm时,细胞不延伸至相邻细胞。还检查了在超疏水和超亲水表面上的细胞粘附行为。细胞在超疏水和超亲水表面上均粘附并增殖。然而,在超疏水表面上,需要持续接触以促进细胞分裂和增殖。另一方面,接种后,细胞容易在超亲水表面上粘附并增殖。细胞粘附行为的这些差异诱导了超亲水区域上的位点选择性细胞粘附。此外,还检查了在平坦的疏水性和亲水性表面上细胞粘附中起重要作用的蛋白质吸附行为。在平坦的亲水性表面上的蛋白质吸附量远大于在平坦的疏水性表面上的蛋白质吸附量。

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