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Manipulating the genetic identity and biochemical surface properties of individual cells with electric-field-induced fusion

Proceedings of the National Academy of SciencesPublished 4 January 2000Open access
Anette Strömberg, Frida Ryttsén, Daniel T. Chiu, Max Davidson, Peter S. Eriksson, Clyde F. Wilson
Citations67

TL;DR

This cell-liposome fusion represents an approach to the manipulation of the cytoplasmic contents and surface properties of single cells and introduces a membrane protein reconstituted in liposomes into the cell plasma membrane.

Abstract

A method for cell-cell and cell-liposome fusion at the single-cell level is described. Individual cells or liposomes were first selected and manipulated either by optical trapping or by adhesion to a micromanipulator-controlled ultramicroelectrode. Spatially selective fusion of the cell-cell or cell-liposome pair was achieved by the application of a highly focused electric field through a pair of 5-micrometer o.d. carbon-fiber ultramicroelectrodes. The ability to fuse together single cells opens new possibilities in the manipulation of the genetic and cellular makeup of individual cells in a controlled manner. In the study of cellular networks, for example, the alteration of the biochemical identity of a selected cell can have a profound effect on the behavior of the entire network. Fusion of a single liposome with a target cell allows the introduction of the liposomal content into the cell interior as well as the addition of lipids and membrane proteins onto the cell surface. This cell-liposome fusion represents an approach to the manipulation of the cytoplasmic contents and surface properties of single cells. As an example, we have introduced a membrane protein (gamma-glutamyltransferase) reconstituted in liposomes into the cell plasma membrane.

Keywords

Biochemistry, Genetics and Molecular BiologyEngineering