砷
生物
微阵列
折叠变化
信号转导
肺
DNA微阵列
细胞凋亡
砷毒性
化学
基因表达
细胞生物学
医学
遗传学
内科学
基因
有机化学
作者
Angeline S. Andrew,Viviane Bernardo,Linda A. Warnke,Jennifer C. Davey,Thomas H. Hampton,Rebecca A. Mason,Jessica E. Thorpe,Michael A. Ihnat,Joshua W. Hamilton
标识
DOI:10.1093/toxsci/kfm200
摘要
The mechanisms of action of drinking water arsenic in the lung and the threshold for biologic effects remain controversial. Our study utilizes Affymetrix 22,690 transcript oligonucleotide microarrays to assess the long-term effects of increasing doses of drinking water arsenic on expression levels in the mouse lung. Mice were exposed at levels commonly found in contaminated drinking water wells in the United States (0, 0.1, 1 ppb), as well as the 50 ppb former maximum contaminant level, for 5 weeks. The expression profiles revealed modification of a number of important signaling pathways, many with corroborating evidence of arsenic responsiveness. We observed statistically significant expression changes for transcripts involved in angiogenesis, lipid metabolism, oxygen transport, apoptosis, cell cycle, and immune response. Validation by reverse transcription–PCR and immunoblot assays confirmed expression changes for a subset of transcripts. These data identify arsenic-modified signaling pathways that will help guide investigations into mechanisms of arsenic's health effects and clarify the threshold for biologic effects and potential disease risk.
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