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One or more keywords matched the following properties of Pierce, Brandon L.
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overview Our group works at the intersection of genetic, molecular, and environmental epidemiology. We are interested in how genetic variation influences or alters the effects of environmental exposures and biomarkers on human health and biology. Areas of ongoing research include (1) dynamic features of the genome that are biomarkers of aging, exposure, and disease risk, (2) genetic susceptibility and response to exposure to arsenic, a known carcinogen (3) methods for assessing causal relationships among risk factors, biomarkers, and disease phenotypes, and (4) genetic contributors to prostate cancer disparities. The long-term goals of our work are to understand toxicity mechanisms and disease biology and to improve our ability to predict disease and target interventions to high-risk sub-populations. Several ongoing projects are described below: • Arsenic and the Human Genome: Over 100 million people worldwide consume arsenic-contaminated drinking water, which increases risk for a wide array of health conditions, including cancer. The goal of this project is to identify features of the human genome, both inherited (i.e., SNPs) and acquired/dynamic (i.e., telomere length, DNA methylation, somatic mutations), that reflect susceptibility to arsenic toxicity or response to arsenic exposure, using data from a large arsenic-exposed cohorts in Bangladesh and the U.S. Achieving these goals will reveal biological mechanisms of toxicity and susceptibility and provide strategies for identifying high risk individuals. • Telomere Length and and DNA methylation in Diverse Human Tissue Types: Age-related telomere shortening may play a critical role in susceptibility to common age-related diseases, including cancer. Using tissue samples from the NHGRI’s Gene-Tissue Expression project (GTEx), Dr. Pierce’s team characterizing determinants of telomere length measurements taken across many cancer-prone tissues. Dr. Pierce's team is also studying DNA methylation features in these diverse tissue types, characterizing the effects of exposures, aging, and inherited genetic variants. • Identifying DNA Methylation Features That Underlie Prostate Cancer Disparities: In light of racial disparities in prostate cancer incidence and mortality in the U.S., Dr. Pierce is leading a project to determine if DNA methylation patterns in prostate tissue differ between African American and Caucasian patients and how such differences are related to clinical features, as well as genetic and environmental factors. This work will contribute to the identification ethnicity-specific biomarkers for prostate cancer aggressiveness.
One or more keywords matched the following items that are connected to Pierce, Brandon L.
Item TypeName
Concept Water Supply
Concept Water
Concept Water Pollutants, Chemical
Concept Water Pollution, Chemical
Concept Drinking Water
Academic Article Arsenic exposure from drinking water, and all-cause and chronic-disease mortalities in Bangladesh (HEALS): a prospective cohort study.
Academic Article Genome-wide association study identifies chromosome 10q24.32 variants associated with arsenic metabolism and toxicity phenotypes in Bangladesh.
Academic Article Dietary B vitamin intakes and urinary total arsenic concentration in the Health Effects of Arsenic Longitudinal Study (HEALS) cohort, Bangladesh.
Academic Article Arsenic exposure, dietary patterns, and skin lesion risk in bangladesh: a prospective study.
Academic Article A prospective study of arsenic exposure from drinking water and incidence of skin lesions in Bangladesh.
Academic Article Urinary and dietary analysis of 18,470 bangladeshis reveal a correlation of rice consumption with arsenic exposure and toxicity.
Academic Article Interaction between arsenic exposure from drinking water and genetic polymorphisms on cardiovascular disease in Bangladesh: a prospective case-cohort study.
Academic Article Drinking Water Arsenic Contamination, Skin Lesions, and Malignancies: A Systematic Review of the Global Evidence.
Academic Article A missense variant in FTCD is associated with arsenic metabolism and toxicity phenotypes in Bangladesh.
Academic Article Association of Arsenic Exposure with Whole Blood DNA Methylation: An Epigenome-Wide Study of Bangladeshi Adults.
Academic Article Research Participants' Attitudes towards Receiving Information on Genetic Susceptibility to Arsenic Toxicity in Rural Bangladesh.
Academic Article Somatic loss of the Y chromosome is associated with arsenic exposure among Bangladeshi men.
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