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Texturing Silicon Nanowires for Highly Localized Optical Modulation of Cellular Dynamics

机译:纹理化硅纳米线,用于高度局部光学调制蜂窝动力学

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Engineered silicon-based materials can display photoelectric and photo thermal responses under light illumination, which may lead to further innovations at the silicon biology interfaces. Silicon nanowires have small radial dimensions, promising as highly localized cellular modulators, however the single crystalline form typically has limited photothermal efficacy due to the poor light absorption and fast heat dissipation. In this work, we report strategies to improve the photothermal response from silicon nanowires by introducing nanoscale textures on the surface and in the bulk. We next demonstrate high resolution extracellular modulation of calcium dynamics in a number of mammalian cells including glial cells, neurons, and cancer cells. The new materials may be broadly used in probing and modulating electrical and chemical signals at the subcellular length scale, which is currently a challenge in the field of electrophysiology or cellular engineering.
机译:工程化的基于硅基材料可以在轻度照明下显示光电和光热响应,这可能导致硅生物学界面的进一步创新。 硅纳米线具有较小的径向尺寸,承诺作为高度局部的细胞调制器,然而由于光吸收差和快速散热,单晶形式通常具有有限的光热功效。 在这项工作中,通过在表面和块状中引入纳米尺度纹理来报告改善硅纳米线的光热响应的策略。 我们下次证明了在包括神经胶质细胞,神经元和癌细胞的许多哺乳动物细胞中的高分辨率细胞外调节钙动力学。 新材料可以广泛地用于在亚细胞长度尺度下探测和调节电气和化学信号,这是目前电生理学或蜂窝工程领域的挑战。

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