Decreasing the thresholds for electroporation by sensitizing cells with local cationic anesthetics and substances that decrease the surface negative electric charge

Author:

Grys Maciej,Madeja Zbigniew,Korohoda Włodzimierz

Abstract

AbstractThe recently described method of cell electroporation by flow of cell suspension through localized direct current electric fields (dcEFs) was applied to identify non-toxic substances that could sensitize cells to external electric fields. We found that local cationic anesthetics such as procaine, lidocaine and tetracaine greatly facilitated the electroporation of AT2 rat prostate carcinoma cells and human skin fibroblasts (HSF). This manifested as a 50% reduction in the strength of the electric field required to induce cell death by irreversible electroporation or to introduce fluorescent dyes such as calcein, carboxyfluorescein or Lucifer yellow into the cells. A similar decrease in the electric field thresholds for irreversible and reversible cell electroporation was observed when the cells were exposed to the electric field in the presence of the non-toxic cationic dyes 9-aminoacridine (9-AAA) or toluidine blue. Identifying non-toxic, reversibly acting cell sensitizers may facilitate cancer tissue ablation and help introduce therapeutic or diagnostic substances into the cells and tissues.

Publisher

Walter de Gruyter GmbH

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference35 articles.

1. Some aspects of the dynamic characteristic of biological membranes;Korohoda;Folia Biol,1967

2. Osmotically induced membrane tension facilitates the triggering of living cell electropermeabilization http dx doi org;Barrau;Bioelectrochemistry,2004

3. New cationic polyprenyl derivative proposed as a lipofecting agent;Madeja;Acta Biochim Pol,2007

4. Facilitation of electroporative drug uptake and cell killing by electrosensitization;Pakhomova;Cell Mol Med,2013

5. Pulsed electric fields for selection of hematopoietic cells and depletion of tumor cell contaminants http dx doi org;Eppich;Nat Biotechnol,2000

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