Literature DB >> 15094314

Exposure to chromium (VI) in the drinking water increases susceptibility to UV-induced skin tumors in hairless mice.

Todd Davidson1, Thomas Kluz, Fredric Burns, Toby Rossman, Qunwei Zhang, Ahmed Uddin, Arthur Nadas, Max Costa.   

Abstract

Hexavalent chromium (Cr (VI)) is a well known-human carcinogen with exposures occurring in both occupational and environmental settings. Although lung carcinogenicity has been well documented for occupational exposure via inhalation, the carcinogenic hazard of drinking water exposure to Cr (VI) has yet to be established. We used a hairless mouse model to study the effects of K(2)CrO(4) in the drinking water on ultraviolet radiation (UVR)-induced skin tumors. Hairless mice were unexposed or exposed to UVR alone (1.2 kJ/m(2)), K(2)CrO(4) alone at 2.5 and 5.0 ppm, or the combination of UVR and K(2)CrO(4) at 0.5, 2.5, and 5.0 ppm. Mice were observed on a weekly basis for the appearance of skin tumors larger than 2 mm. All the mice were euthanized on day 182. The skin tumors were excised and subsequently analyzed microscopically for malignancy by histopathology. There was a total absence of observable skin tumors in untreated mice and in mice exposed to chromate alone. However, there was a dose-dependent increase in the number of skin tumors greater than 2 mm in mice exposed to K(2)CrO(4) and UV compared with mice exposed to UV alone. The increase in tumors larger than 2 mm was statistically significant (P < 0.05) for UV and K(2)CrO(4) at the two highest K(2)CrO(4) doses (2.5 and 5.0 ppm), and there was a statistically significant increase in the numbers of malignant tumors per mouse in the UVR plus K(2)CrO(4) (5 ppm) group compared with UV alone. The data presented here indicate that K(2)CrO(4) increases the number of UV-induced skin tumors in a dose-dependent manner, and these results support the concern that regulatory agencies have relative to the carcinogenic health hazards of widespread human exposure to Cr (VI) in drinking water.

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Year:  2004        PMID: 15094314     DOI: 10.1016/j.taap.2004.01.006

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  16 in total

Review 1.  Basic mechanics of DNA methylation and the unique landscape of the DNA methylome in metal-induced carcinogenesis.

Authors:  Jason Brocato; Max Costa
Journal:  Crit Rev Toxicol       Date:  2013-07       Impact factor: 5.635

Review 2.  Exposure to Trace Elements and Risk of Skin Cancer: A Systematic Review of Epidemiologic Studies.

Authors:  Natalie H Matthews; Katherine Fitch; Wen-Qing Li; J Steven Morris; David C Christiani; Abrar A Qureshi; Eunyoung Cho
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2018-10-08       Impact factor: 4.254

3.  Exposure to hexavalent chromium resulted in significantly higher tissue chromium burden compared with trivalent chromium following similar oral doses to male F344/N rats and female B6C3F1 mice.

Authors:  Bradley J Collins; Matthew D Stout; Keith E Levine; Grace E Kissling; Ronald L Melnick; Timothy R Fennell; Ramsey Walden; Kamal Abdo; John B Pritchard; Reshan A Fernando; Leo T Burka; Michelle J Hooth
Journal:  Toxicol Sci       Date:  2010-09-15       Impact factor: 4.849

4.  A Prospective Study of Toenail Trace Element Levels and Risk of Skin Cancer.

Authors:  Natalie H Matthews; Michelle Koh; Wen-Qing Li; Tricia Li; Walter C Willett; Meir J Stampfer; David C Christiani; J Steven Morris; Abrar A Qureshi; Eunyoung Cho
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2019-06-19       Impact factor: 4.254

Review 5.  Genetic and epigenetic mechanisms in metal carcinogenesis and cocarcinogenesis: nickel, arsenic, and chromium.

Authors:  Konstantin Salnikow; Anatoly Zhitkovich
Journal:  Chem Res Toxicol       Date:  2007-10-30       Impact factor: 3.739

Review 6.  Oral Chromium Exposure and Toxicity.

Authors:  Hong Sun; Jason Brocato; Max Costa
Journal:  Curr Environ Health Rep       Date:  2015-09

7.  p53 activation by Cr(VI): a transcriptionally limited response induced by ATR kinase in S-phase.

Authors:  Michal W Luczak; Casey Krawic; Anatoly Zhitkovich
Journal:  Toxicol Sci       Date:  2019-08-06       Impact factor: 4.849

Review 8.  Application of the U.S. EPA mode of action Framework for purposes of guiding future research: a case study involving the oral carcinogenicity of hexavalent chromium.

Authors:  Chad M Thompson; Laurie C Haws; Mark A Harris; Nicole M Gatto; Deborah M Proctor
Journal:  Toxicol Sci       Date:  2010-10-14       Impact factor: 4.849

Review 9.  Chromium in drinking water: sources, metabolism, and cancer risks.

Authors:  Anatoly Zhitkovich
Journal:  Chem Res Toxicol       Date:  2011-07-28       Impact factor: 3.739

10.  Distinct contributions of JNK and p38 to chromium cytotoxicity and inhibition of murine embryonic stem cell differentiation.

Authors:  Liang Chen; Jerald L Ovesen; Alvaro Puga; Ying Xia
Journal:  Environ Health Perspect       Date:  2009-04-03       Impact factor: 9.031

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