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Wild-type and Ras-transformed fibroblasts display differential mitogenic responses to transient sodium arsenite
K J Trouba1, J G Glanzer, R L Vorce
1Department of Pharmacology and Center for Environmental Toxicology, University of Nebraska Medical Center, Omaha 68198-6260, USA.
Abstract:
Arsenic is a human carcinogen whose mechanism of action remains undefined. Based on the hypothesis that arsenic sensitizes cells to mitogenic stimulation by affecting the receptor tyrosine kinase (RTK) signal transduction pathway, these studies first examined the response of fibroblasts to specific mitogens using a defined media system. In both rodent and human fibroblasts, DNA synthesis was found to be stimulated in cells exposed to a transient, sub-lethal concentration of sodium arsenite followed by stimulation with known RTK pathway activators. This effect is observed for up to 32 h after removal of arsenic, suggesting that the RTK pathway is affected in a sustained manner. In contrast, transient arsenic exposure of ras-transformed cells results in decreased mitogen-stimulated DNA synthesis. Flow cytometry indicates that arsenic increases the percentage of wild-type cells in the S-phase of the cell cycle; conversely, the percentage of ras-transformed cells in S-phase is decreased by arsenic. No evidence of arsenic-induced cytotoxicity was detected using the neutral red assay, ensuring that decreased DNA synthesis in ras-transformed cells is not due to cell death. Taken together, the results of experiments presented herein indicate that arsenic produces sustained alterations in the growth characteristics of rodent and human fibroblasts. It is postulated that the proliferation-enhancing effect of arsenic on wild-type cells contributes to its ability to cause cancer.
Insights
Arsenic exposure enhances DNA synthesis in normal cells by affecting the receptor tyrosine kinase (RTK) pathway, but reduces it in ras-transformed cells. This suggests arsenic
Area of Science:
- Toxicology
- Cell Biology
- Cancer Research
Background:
- Arsenic is a known human carcinogen with an undefined mechanism of action.
- The hypothesis suggests arsenic affects the receptor tyrosine kinase (RTK) signal transduction pathway, sensitizing cells to mitogenic stimulation.
Purpose of the Study:
- To investigate the effect of arsenic on cell proliferation and the RTK pathway.
- To determine if arsenic exposure alters DNA synthesis in response to mitogens in fibroblasts.
Main Methods:
- Utilized a defined media system to study fibroblast responses to mitogens.
- Exposed rodent and human fibroblasts to sub-lethal sodium arsenite concentrations.
- Assessed DNA synthesis, cell cycle changes (flow cytometry), and cytotoxicity (neutral red assay).
Main Results:
- Transient arsenic exposure followed by RTK activators stimulated DNA synthesis in wild-type fibroblasts for up to 32 hours.
- Arsenic exposure increased the percentage of wild-type cells in S-phase.
- Conversely, arsenic decreased mitogen-stimulated DNA synthesis and S-phase percentage in ras-transformed cells without causing cytotoxicity.
Conclusions:
- Arsenic induces sustained alterations in the growth characteristics of fibroblasts.
- The proliferation-enhancing effect on normal cells may contribute to arsenic's carcinogenicity.