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用于细胞通讯分析的单细胞显微注射

Single-cell Microinjection for Cell Communication Analysis.

作者信息

Alberto Anael Viana Pinto, Bonavita André G, Fidalgo-Neto Antonio A, Berçot Filipe, Alves Luiz A

机构信息

Institute Oswaldo Cruz, Laboratory of Cellular Communication, Oswaldo Cruz Foundation.

Institute Oswaldo Cruz, Laboratory of Cellular Communication, Oswaldo Cruz Foundation;

出版信息

J Vis Exp. 2017 Feb 26(120):50836. doi: 10.3791/50836.

Abstract

Gap junctions are intercellular channels that allow the communication of neighboring cells. This communication depends on the contribution of a hemichannel by each neighboring cell to form the gap junction. In mammalian cells, the hemichannel is formed by six connexins, monomers with four transmembrane domains and a C and N terminal within the cytoplasm. Gap junctions permit the exchange of ions, second messengers, and small metabolites. In addition, they have important roles in many forms of cellular communication within physiological processes such as synaptic transmission, heart contraction, cell growth and differentiation. We detail how to perform a single-cell microinjection of Lucifer Yellow to visualize cellular communication via gap-junctions in living cells. It is expected that in functional gap junctions, the dye will diffuse from the loaded cell to the connected cells. It is a very useful technique to study gap junctions since you can evaluate the diffusion of the fluorescence in real time. We discuss how to prepare the cells and the micropipette, how to use a micromanipulator and inject a low molecular weight fluorescent dye in an epithelial cell line.

摘要

间隙连接是允许相邻细胞进行通讯的细胞间通道。这种通讯依赖于每个相邻细胞贡献一个半通道来形成间隙连接。在哺乳动物细胞中,半通道由六个连接蛋白组成,连接蛋白是具有四个跨膜结构域以及位于细胞质内的一个C末端和一个N末端的单体。间隙连接允许离子、第二信使和小代谢物的交换。此外,它们在诸如突触传递、心脏收缩、细胞生长和分化等生理过程中的多种细胞通讯形式中发挥重要作用。我们详细介绍如何对荧光黄进行单细胞显微注射,以可视化活细胞中通过间隙连接的细胞通讯。预计在功能性间隙连接中,染料将从加载染料的细胞扩散到相连的细胞。这是研究间隙连接的一项非常有用的技术,因为可以实时评估荧光的扩散情况。我们讨论如何制备细胞和微量移液器,如何使用显微操作器以及在上皮细胞系中注射低分子量荧光染料。

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