This training grant application requests support for 8 pre-doctoral and 4 postdoctoral trainees in the Curriculum in Toxicology program at the University of North Carolina-Chapel Hill. The proposed training program brings together a highly interactive and productive faculty of basic scientists, physician scientists and public health researchers from the Schools of Medicine, Public Health, and Pharmacy at UNC, plus outstanding researchers and mentors from the U.S. EPA and NIEHS in Research Triangle Park. The training program faculty includes 44 basic researchers and 11 DVM/MDs with proven research records in environmental health. The research interests of the faculty can be broadly divided into a) Mechanisms, b.) Systems Biology, Biomarkers, Metabolism, c) Organ-Specific Toxicology, and d) Carcinogenesis. This unique blend of environmental health researchers has worked together for the past 30 years to produce 134 Ph.D. graduates and 73 postdoctoral fellows who have gone on to productive careers in academia, government, and industry. The investigators'research training focuses on providing pre-doctoral and postdoctoral trainees the environment, infrastructure, and resources to conduct interdisciplinary cross-cutting research in environmental toxicology, systems toxicology/biomarkers, research translation, and animal models of human diseases. In order to maintain this successful training program, the investigators continuously update their training approaches, incorporating feedback from their External Advisory Committee and their own internal evaluation. During the previous funding period, the investigators implemented measures to enhance program cohesiveness, increased co-mentoring, and focused on interdisciplinary and translational research with critical clinical and public health impact. In the current application, they will add further improvements including a mentor led ethics seminar and opportunities to acquire professional skills. The Curriculum in Toxicology at UNC-CH has outstanding didactic instruction, excellent oversight, unparalleled resources, and a superb environment to support the proposed training. As outlined in this application, the investigators'previous record demonstrates that the outstanding new scientists they train will excel at interdisciplinary approaches that result in the mechanistic understanding and translation of how the environment influences human disease. Public Health Relevance: This interdisciplinary training program is designed to provide the necessary resources, infrastructure, and research opportunities for pre-doctoral and postdoctoral trainees interested in environmental health effects on human diseases. The goal of the Curriculum in Toxicology at UNC-CH is to train new scientists that are able to enhance their understanding of how the environment affects human disease.

Public Health Relevance

This interdisciplinary training program is designed to provide the necessary resources, infrastructure, and research opportunities for pre-doctoral and postdoctoral trainees interested in environmental health effects on human diseases. The goal of the Curriculum in Toxicology at UNC-CH is to train new scientists that are able to enhance their understanding of how the environment affects human disease.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Institutional National Research Service Award (T32)
Project #
2T32ES007126-31
Application #
8474940
Study Section
Environmental Health Sciences Review Committee (EHS)
Program Officer
Humble, Michael C
Project Start
1982-07-01
Project End
2018-06-30
Budget Start
2013-07-01
Budget End
2014-06-30
Support Year
31
Fiscal Year
2013
Total Cost
$496,906
Indirect Cost
$29,552
Name
University of North Carolina Chapel Hill
Department
Pediatrics
Type
Schools of Medicine
DUNS #
608195277
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Huang, Madelyn C; Douillet, Christelle; Dover, Ellen N et al. (2018) Prenatal arsenic exposure and dietary folate and methylcobalamin supplementation alter the metabolic phenotype of C57BL/6J mice in a sex-specific manner. Arch Toxicol 92:1925-1937
Hazari, Mehdi S; Stratford, Kimberly M; Krantz, Q Todd et al. (2018) Comparative Cardiopulmonary Effects of Particulate Matter- And Ozone-Enhanced Smog Atmospheres in Mice. Environ Sci Technol 52:3071-3080
Stratford, Kimberly; Haykal-Coates, Najwa; Thompson, Leslie et al. (2018) Early-Life Persistent Vitamin D Deficiency Alters Cardiopulmonary Responses to Particulate Matter-Enhanced Atmospheric Smog in Adult Mice. Environ Sci Technol 52:3054-3061
Jefferson, Wendy N; Kinyamu, H Karimi; Wang, Tianyuan et al. (2018) Widespread enhancer activation via ER? mediates estrogen response in vivo during uterine development. Nucleic Acids Res 46:5487-5503
Buglak, Nicholas E; Batrakova, Elena V; Mota, Roberto et al. (2018) Insights on Localized and Systemic Delivery of Redox-Based Therapeutics. Oxid Med Cell Longev 2018:2468457
Dover, E N; Beck, R; Huang, M C et al. (2018) Arsenite and methylarsonite inhibit mitochondrial metabolism and glucose-stimulated insulin secretion in INS-1 832/13 ? cells. Arch Toxicol 92:693-704
Burbank, Allison J; Duran, Charity G; Pan, Yinghao et al. (2018) Gamma tocopherol-enriched supplement reduces sputum eosinophilia and endotoxin-induced sputum neutrophilia in volunteers with asthma. J Allergy Clin Immunol 141:1231-1238.e1
Yin, Q; Hung, S-C; Rathmell, W K et al. (2018) Integrative radiomics expression predicts molecular subtypes of primary clear cell renal cell carcinoma. Clin Radiol 73:782-791
Lavrich, Katelyn S; Corteselli, Elizabeth M; Wages, Phillip A et al. (2018) Investigating mitochondrial dysfunction in human lung cells exposed to redox-active PM components. Toxicol Appl Pharmacol 342:99-107
Buglak, Nicholas E; Jiang, Wulin; Bahnson, Edward S M (2018) Cinnamic aldehyde inhibits vascular smooth muscle cell proliferation and neointimal hyperplasia in Zucker Diabetic Fatty rats. Redox Biol 19:166-178

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