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Nonlinear optical measurement of membrane potential around single molecules at selected cellular sites

机译:非线性光学测量选定细胞部位单个分子周围的膜电位

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摘要

Membrane potential around single molecules has been measured by using the nonlinear optical phenomenon of second harmonic generation. This advance results from the interaction between a highly dipolar molecule with a selectively directed highly polarizable 1-nm gold particle. With this approach, a second harmonic signal, which is enhanced by the nanoparticle, is detected from a volume of nanometric dimensions. This present work clearly shows that functional cellular imaging around single molecules is possible by selectively directing an antibody with a 1-nm gold label to a specific membrane protein. The results of this work open the way for three-dimensional, high resolution functional imaging of membrane electrophysiology in cells and cellular networks.
机译:已经通过使用二次谐波产生的非线性光学现象来测量单个分子周围的膜电位。这种进步是由于高度偶极分子与选择性定向的高度可极化的1 nm金粒子之间的相互作用而产生的。通过这种方法,可以从大量的纳米尺寸中检测出被纳米颗粒增强的二次谐波信号。这项工作清楚地表明,通过选择性地将带有1-nm金标记的抗体定向到特定的膜蛋白,可以在单个分子周围进行功能性细胞成像。这项工作的结果为细胞和细胞网络中膜电生理的三维高分辨率功能成像开辟了道路。

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