Induction of a bystander mutagenic effect of alpha particles in mammalian cells
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- 11 February 2000
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (5), 2099-2104
- https://doi.org/10.1073/pnas.030420797
Abstract
Ever since the discovery of X-rays was made by Röntgen more than a hundred years ago, it has always been accepted that the deleterious effects of ionizing radiation such as mutation and carcinogenesis are attributable mainly to direct damage to DNA. Although evidence based on microdosimetric estimation in support of a bystander effect appears to be consistent, direct proof of such extranuclear/extracellular effects are limited. Using a precision charged particle microbeam, we show here that irradiation of 20% of randomly selected A(L) cells with 20 alpha particles each results in a mutant fraction that is 3-fold higher than expected, assuming no bystander modulation effect. Furthermore, analysis by multiplex PCR shows that the types of mutants induced are significantly different from those of spontaneous origin. Pretreatment of cells with the radical scavenger DMSO had no effect on the mutagenic incidence. In contrast, cells pretreated with a 40 microM dose of lindane, which inhibits cell-cell communication, significantly decreased the mutant yield. The doses of DMSO and lindane used in these experiments are nontoxic and nonmutagenic. We further examined the mutagenic yield when 5-10% of randomly selected cells were irradiated with 20 alpha particles each. Results showed, likewise, a higher mutant yield than expected assuming no bystander effects. Our studies provide clear evidence that irradiated cells can induce a bystander mutagenic response in neighboring cells not directly traversed by alpha particles and that cell-cell communication process play a critical role in mediating the bystander phenomenon.Keywords
This publication has 45 references indexed in Scilit:
- Studies of bystander effects in human fibroblasts using a charged particle microbeamInternational Journal of Radiation Biology, 1998
- Inactivation of individual mammalian cells by single alpha-particlesInternational Journal of Radiation Biology, 1997
- Induction of genomic instability in normal human bronchial epithelial cells by 238Pu α-particlesCarcinogenesis: Integrative Cancer Research, 1996
- Mutant Quantity and Quality in Mammalian Cells (A L ) Exposed to Cesium-137 Gamma Radiation: Effect of CaffeineRadiation Research, 1995
- Germline mutations in the Wilms' tumor suppressor gene are associated with abnormal urogenital development in Denys-Drash syndromeCell, 1991
- Radioprotective Effects of Dimethyl Sulfoxide in Golden Hamster Embryo Cells Exposed to γ Rays at 77 K: II. Protection from Lethal, Chromosomal, and DNA DamageRadiation Research, 1990
- The Combined Effects of α-particles and X-rays on Cell Killing and Micronuclei Induction in Lung Epithelial CellsInternational Journal of Radiation Biology, 1990
- EPA’s Perspective on Risks from Residential Radon ExposureJAPCA, 1989
- Mutation induction by charged particles of defined linear energy transferCarcinogenesis: Integrative Cancer Research, 1988
- Cytotoxic, mutagenic, and cell-cell communication inhibitory properties of DDT, lindane, and chlordane on Chinese hamster cellsin vitroArchives of Environmental Contamination and Toxicology, 1983