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Single-Cell Optogenetic Control of Calcium Signaling with a High-Density Micro-LED Array

机译:高密度Micro LED阵列的钙信号的单细胞光遗传学控制。

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摘要

Precise optogenetic control, ideally down to single cells in dense cell populations, is essential in understanding the heterogeneity of cell networks. Devices with such capability, if built in a chip scale, will advance optogenetic studies at cellular levels in a variety of experimental settings. Here we demonstrate optogenetic control of intracellular Ca dynamics at the single cell level using a 16-μm pitched micro-light emitting diode (LED) array that features high brightness, small spot size, fast response, and low voltage operation. Individual LED pixels are able to reliably trigger intracellular Ca transients, confirmed by fluorescence microscopy and control experiments and cross-checked by two genetically coded Ca indicators. Importantly, our array can optogenetically address individual cells that are sub-10 μm apart in densely packed cell populations. These results suggest the possible use of the micro-LED array toward a lab-on-a-chip for single-cell optogenetics, which may allow for pharmaceutical screening and fundamental studies on a variety of cell networks.
机译:精确的光遗传学控制,理想的情况是低密度细胞群中的单个细胞,对于理解细胞网络的异质性至关重要。具有这种功能的设备(如果以芯片规模构建)将在各种实验设置中推进细胞水平的光遗传学研究。在这里,我们演示了使用16μm间距微发光二极管(LED)阵列在单个细胞水平上对细胞内Ca动力学的光遗传学控制,该阵列具有高亮度,小光斑尺寸,快速响应和低电压操作的特点。单个LED像素能够可靠地触发细胞内Ca瞬变,这已通过荧光显微镜和对照实验进行了确认,并通过两个遗传编码的Ca指示剂进行了交叉检查。重要的是,我们的阵列可以光遗传学解决密集包装的细胞群体中相距10μm以下的单个细胞。这些结果表明,micro-LED阵列有可能用于单细胞光遗传学的芯片实验室,这可能允许对各种细胞网络进行药物筛选和基础研究。

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