SELECTIVE KILLING OF CARCINOMA-CELLS INVITRO BY LIPOPHILIC-CATIONIC COMPOUNDS - A CELLULAR BASIS
- 1 January 1985
- journal article
- research article
- Vol. 39 (5) , 220-226
Abstract
Lipophilic positively-charged compounds are facilitated across biological membranes by the transmembrane potential of intact cells. One such compound, rhodamine 123, has recently been shown to be selectively toxic toward a variety of transformed (carcinoma), epithelial cells in vitro (Lampidis et al., 1982; Bernal et al., 1982; Lampidis et al., 1983). A mechanism that could account for the selectivity of this agent would be a difference in the plasma membrane potential between normal and carcinoma cells. We report here that a significantly higher transmembrane potential has been found in a pair of carcinoma (83 mV for human breast and -99 mV for human cervix) as compared to normal (-56 mV for marsupial kidney and -48 mV for monkey kidney) epithelial cell lines. We also identified 3 other positively-charged lipophilic compounds, safranin 0, rhodamine 6G and tetraphenylphosphonium chloride (TPP+), which show selective toxicity toward carcinoma cells in vitro, while an uncharged lipophilic analog, rhodamine 116, does not. These data suggest that the higher plasma membrane potential of carcinoma cells may in part contribute to the preferential accumulation and selective toxicity of the lipophilic cationic compounds we have examined. An extension of this concept to an in vivo environment could lead to a class of cationic compounds which selectively exploit differences between normal and carcinoma cells.This publication has 7 references indexed in Scilit:
- Effects of the mitochondrial probe rhodamine 123 and related analogs on the function and viability of pulsating myocardial cells in cultureInflammation Research, 1984
- SELECTIVE TOXICITY OF RHODAMINE-123 IN CARCINOMA-CELLS INVITRO1983
- Rhodamine-123 Selectively Reduces Clonal Growth of Carcinoma Cells in VitroScience, 1982
- Unusual retention of rhodamine 123 by mitochondria in muscle and carcinoma cells.Proceedings of the National Academy of Sciences, 1982
- Monitoring of relative mitochondrial membrane potential in living cells by fluorescence microscopy.The Journal of cell biology, 1981
- Localization of mitochondria in living cells with rhodamine 123.Proceedings of the National Academy of Sciences, 1980
- Use of a lipophilic cation for determination of membrane potential in neuroblastoma-glioma hybrid cell suspensionsProceedings of the National Academy of Sciences, 1979