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用超微电极改变单个培养细胞和细胞器的生化状态。

Altering the biochemical state of individual cultured cells and organelles with ultramicroelectrodes.

作者信息

Lundqvist J A, Sahlin F, Aberg M A, Strömberg A, Eriksson P S, Orwar O

机构信息

Department of Chemistry, Göteborg University, SE-412 96 Göteborg, Sweden.

出版信息

Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10356-60. doi: 10.1073/pnas.95.18.10356.

Abstract

We describe an efficient technique for the selective chemical and biological manipulation of the contents of individual cells. This technique is based on the electric-field-induced permeabilization (electroporation) in biological membranes using a low-voltage pulse generator and microelectrodes. A spatially highly focused electric field allows introduction of polar cell-impermeant solutes such as fluorescent dyes, fluorogenic reagents, and DNA into single cells. The high spatial resolution of the technique allows for design of, for example, cellular network constructions in which cells in close contact with each other can be made to possess different biochemical, biophysical, and morphological properties. Fluorescein, and fluo-3 (a calcium-sensitive fluorophore), are electroporated into the soma of cultured single progenitor cells derived from adult rat hippocampus. Fluo-3 also is introduced into individual submicrometer diameter processes of thapsigargin-treated progenitor cells, and a plasmid vector cDNA construct (pRAY 1), expressing the green fluorescent protein, is electroporated into cultured single COS 7 cells. At high electric field strengths, observations of dye-transfer into organelles are proposed.

摘要

我们描述了一种用于对单个细胞内容物进行选择性化学和生物操作的高效技术。该技术基于使用低压脉冲发生器和微电极在生物膜中进行电场诱导的通透化(电穿孔)。空间上高度聚焦的电场允许将极性的细胞不可渗透溶质,如荧光染料、荧光生成试剂和DNA引入单个细胞。该技术的高空间分辨率允许设计例如细胞网络结构,其中彼此紧密接触的细胞可以被赋予不同的生化、生物物理和形态学特性。将荧光素和fluo-3(一种钙敏感荧光团)电穿孔到源自成年大鼠海马体的培养单个祖细胞的胞体中。Fluo-3也被引入到经毒胡萝卜素处理的祖细胞的单个亚微米直径的突起中,并且将表达绿色荧光蛋白的质粒载体cDNA构建体(pRAY 1)电穿孔到培养的单个COS 7细胞中。在高电场强度下,提出了对染料转移到细胞器中的观察。

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