Wilson Stacy A, Millard Andrew, Lewis Aaron, Loew Leslie M
Cold Spring Harb Protoc. 2014 Jun 2;2014(6):643-54. doi: 10.1101/pdb.prot081786.
This protocol describes the nonlinear optical phenomenon known as second-harmonic generation (SHG) and discusses its special attributes for imaging membrane-potential changes in single cells and multicellular preparations. Undifferentiated N1E-115 mouse neuroblastoma cells are used as a model cellular system for membrane electrophysiology. Styryl and naphthylstyryl dyes, also known as hemicyanines, are a class of electrochromic membrane-staining probes that have been used to monitor membrane potential by fluorescence; they also produce SHG images of cell membranes with SHG intensities that are sensitive to voltage. These experiments allow for the precise characterization of the voltage sensitivity of SHG and identification of the optimal wavelength for the incident laser fundamental light. This protocol presents the steps for the culture, staining, patching, and imaging of cells. The details of the imaging system and the measurements obtained are discussed, as are the prospects of this technology for imaging membrane potential changes in neuronal preparations.
本方案描述了称为二次谐波产生(SHG)的非线性光学现象,并讨论了其在成像单细胞和多细胞制剂中膜电位变化方面的特殊属性。未分化的N1E-115小鼠神经母细胞瘤细胞用作膜电生理学的模型细胞系统。苯乙烯基和萘基苯乙烯基染料,也称为半菁,是一类电致变色膜染色探针,已被用于通过荧光监测膜电位;它们还能产生细胞膜的SHG图像,其SHG强度对电压敏感。这些实验能够精确表征SHG的电压敏感性,并确定入射激光基波光的最佳波长。本方案介绍了细胞培养、染色、膜片钳和成像的步骤。讨论了成像系统的细节和获得的测量结果,以及该技术在成像神经元制剂中膜电位变化方面的前景。