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Photopatterning Proteins and Cells in Aqueous Environment Using TiO2 Photocatalysis

机译:TiO2光催化在水环境中对蛋白质和细胞进行光图案化

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摘要

Organic contaminants adsorbed on the surface of titanium dioxide (TiO2) can be decomposed by photocatalysis under ultraviolet (UV) light. Here we describe a novel protocol employing the TiO2 photocatalysis to locally alter cell affinity of the substrate surface. For this experiment, a thin TiO2 film was sputter-coated on a glass coverslip, and the TiO2 surface was subsequently modified with an organosilane monolayer derived from octadecyltrichlorosilane (OTS), which inhibits cell adhesion. The sample was immersed in a cell culture medium, and focused UV light was irradiated to an octagonal region. When a neuronal cell line PC12 cells were plated on the sample, cells adhered only on the UV-irradiated area. We further show that this surface modification can also be performed in situ, i.e., even when cells are growing on the substrate. Proper modification of the surface required an extracellular matrix protein collagen to be present in the medium at the time of UV irradiation. The technique presented here can potentially be employed in patterning multiple cell types for constructing coculture systems or to arbitrarily manipulate cells under culture.
机译:吸附在二氧化钛(TiO2)表面的有机污染物可以在紫外线(UV)下通过光催化分解。在这里,我们描述了一种新的协议,采用TiO2光催化来局部改变底物表面的细胞亲和力。对于此实验,将TiO2薄膜溅射镀在玻璃盖玻片上,然后用衍生自十八烷基三氯硅烷(OTS)的有机硅烷单层修饰TiO2表面,从而抑制细胞粘附。将样品浸入细胞培养基中,并将聚焦的紫外线照射到八边形区域。当将神经元细胞系PC12细胞接种在样品上时,细胞仅粘附在紫外线照射的区域。我们进一步表明,这种表面修饰也可以原位进行,即使当细胞在底物上生长时也是如此。表面的适当修饰要求在紫外线照射时培养基中存在细胞外基质蛋白胶原。本文介绍的技术可潜在地用于对多种细胞类型进行模式化,以构建共培养系统或任意操纵培养中的细胞。

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