The objectives of our Harvard Kresge Center for Environmental Health are to generate new knowledge relating to the physiology, pharmacology, pathology, cell biology, and epidemiology of environmental disease, and to apply this knowledge to new modalities of therapy and prevention. We intend to realize these objective through a variety of approaches which range from studies of molecules and cells to those of whole animals and human populations. Through the organizational structure and financial support provided by the NIEHS Center Grant, we hope to increase the impact of our research and the prevention, diagnosis and treatment of environmental diseases. A major goal is to facilitate productive interactions between basic and applied environmental science. This will be accomplished by fostering active collaborations among six scientific cores: They are: 1) Radiobiology and Environmental Carcinogenesis, 2) Biochemical and Environmental Toxicology, 3) Respiratory Biology and Inhalation Toxicology, 4) Environmental Epidemiology, 5) Occupational Health, and 6) Environmental Science and Engineering. The work of the scientific cores, their faculty, students and fellows, will be greatly facilitated by four facilities cores: They include: 1) Cell and Molecular Imaging, 2) Human Cell Bank, Genotyping and Tissue Culture, 3) Exposures, and 4) Biostatistics and Data Management. Finally our ability to make our research available to the public will be greatly enhanced by our Community Outreach and Education Core. The theme of our center grant is the effects of physical and chemical factors in the environment on biological system, with particular emphasis on the health of humans. Biologic effects include alteration of function, as well as initiation or aggravation of illness, disability and premature death. A wide range of diseases and effects are included, such as cancer, chronic lung disease, reproductive outcomes and effects on the nervous and renal systems. Our approaches are both toxicologic and epidemiologic. Toxicologic approaches include a variety of molecular, biochemical and physiologic methods applied to biologic systems ranging from cells to whole organisms. Epidemiologic methods also cover a wide range from field studies to analysis of vital records and case control studies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Center Core Grants (P30)
Project #
5P30ES000002-37
Application #
2900373
Study Section
Environmental Health Sciences Review Committee (EHS)
Project Start
1977-12-01
Project End
2003-03-31
Budget Start
1999-04-01
Budget End
2000-03-31
Support Year
37
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Harvard University
Department
Public Health & Prev Medicine
Type
Schools of Public Health
DUNS #
082359691
City
Boston
State
MA
Country
United States
Zip Code
02115
Gregory, David J; Kramnik, Igor; Kobzik, Lester (2018) Protection of macrophages from intracellular pathogens by miR-182-5p mimic-a gene expression meta-analysis approach. FEBS J 285:244-260
Shen, Sipeng; Zhang, Ruyang; Zhang, Jinming et al. (2018) Welding fume exposure is associated with inflammation: a global metabolomics profiling study. Environ Health 17:68
Thomas, Dennis G; Smith, Jordan N; Thrall, Brian D et al. (2018) ISD3: a particokinetic model for predicting the combined effects of particle sedimentation, diffusion and dissolution on cellular dosimetry for in vitro systems. Part Fibre Toxicol 15:6
Dickerson, Aisha S; Hansen, Johnni; Gredal, Ole et al. (2018) Amyotrophic lateral sclerosis and exposure to diesel exhaust in a Danish cohort. Am J Epidemiol :
Machtinger, Ronit; Gaskins, Audrey J; Racowsky, Catherine et al. (2018) Urinary concentrations of biomarkers of phthalates and phthalate alternatives and IVF outcomes. Environ Int 111:23-31
Aris, Izzuddin M; Rifas-Shiman, Sheryl L; Li, Ling-Jun et al. (2018) Pre-, Perinatal, and Parental Predictors of Body Mass Index Trajectory Milestones. J Pediatr 201:69-77.e8
Lee, Alison G; Le Grand, Blake; Hsu, Hsiao-Hsien Leon et al. (2018) Prenatal fine particulate exposure associated with reduced childhood lung function and nasal epithelia GSTP1 hypermethylation: Sex-specific effects. Respir Res 19:76
Sheffield, Perry E; Speranza, Rosa; Chiu, Yueh-Hsiu Mathilda et al. (2018) Association between particulate air pollution exposure during pregnancy and postpartum maternal psychological functioning. PLoS One 13:e0195267
Orta, Olivia R; Tworoger, Shelley S; Terry, Kathryn L et al. (2018) An evaluation of distal hair cortisol concentrations collected at delivery. Stress 21:355-365
Carignan, Courtney C; Mínguez-Alarcón, Lidia; Williams, Paige L et al. (2018) Paternal urinary concentrations of organophosphate flame retardant metabolites, fertility measures, and pregnancy outcomes among couples undergoing in vitro fertilization. Environ Int 111:232-238

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