This is a competing continuation for the Center of Excellence in Environmental Toxicology (CEET), the P30 Environmental Health Sciences Core Center (EHS CC) at the University of Pennsylvania. The Center is comprised of 61 members from 20 Departments and 6 Schools, with equal representation of basic and clinician scientists drawn from the Perelman School of Medicine (PSOM) and Children's Hospital of Philadelphia (CHOP). The synergistic combination of basic and clinician-scientists places the CEET in a strong position to conduct high-impact, translational EHS research. The CEET is the only EHS CC in the Commonwealth of Pennsylvania and has built a research agenda that is responsive to the environmental health needs of the region knowing that the solutions can be translated elsewhere. The CEET mission is to elucidate the mechanistic links between environmental exposures and human disease and translate findings into action to improve the health of vulnerable individuals, and local, national and global communities. Our theme in Translational Environmental Health will be accomplished as follows. The CEET will utilize its affinity group structure in Lung and Airway Disease to address diseases associated with poor air quality, ozone, PM2.5 and asbestos exposure; in Oxidative Stress and Oxidative Stress Injury to elucidate how environmental exposures exacerbate oxidative stress and inflammation; in Reproduction, Endocrinology & Development to determine how environmental exposures act at windows of susceptibility to cause defects from conception to adulthood; and in Gene-Environment Interactions to determine how environmental exposures confer disease risk due to differences in genotype and epigenotype. Translation of these findings on an individual bases will lead to Precision Environmental Medicine (PREEM). The CEET builds integrated research teams to study topics that transcend affinity group (e.g. endocrine disrupting chemicals and epigenetics) and translational research teams to tackle environmental health challenges identified by its Community Outreach and Engagement Core (e.g. asbestos exposure in Ambler) with the goal of disseminating findings back to the affected communities. The CEET provides the tools required for PREEM by maintaining an Integrative Health Sciences Facility Core for human subject studies, a Translational Biomarker Core to measure biomarkers of exposure and effect, and a CEET Informatics Core to integrate omics data to capture the exposome. The CEET builds capacity in EHS by funding pilot-projects and career development. This structure enables the CEET to inform the decisions of policy makers and to improve public health in the citizens of the Commonwealth of Pennsylvania now and in the future.

Public Health Relevance

The Center of Excellence in Environmental Toxicology improves environmental public health by conducting research in model systems and human subjects exposed to environmental toxicants, and translate this information to communities, health care professionals, and decision-makers and to patients.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Center Core Grants (P30)
Project #
2P30ES013508-10
Application #
8841114
Study Section
Environmental Health Sciences Review Committee (EHS)
Program Officer
Thompson, Claudia L
Project Start
2005-04-01
Project End
2020-03-31
Budget Start
2015-04-16
Budget End
2016-03-31
Support Year
10
Fiscal Year
2015
Total Cost
$1,600,000
Indirect Cost
$600,000
Name
University of Pennsylvania
Department
Pharmacology
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Xin, Frances; Fischer, Erin; Krapp, Christopher et al. (2018) Mice exposed to bisphenol A exhibit depressive-like behavior with neurotransmitter and neuroactive steroid dysfunction. Horm Behav 102:93-104
Knijnenburg, Theo A; Wang, Linghua; Zimmermann, Michael T et al. (2018) Genomic and Molecular Landscape of DNA Damage Repair Deficiency across The Cancer Genome Atlas. Cell Rep 23:239-254.e6
Blundell, Cassidy; Yi, Yoon-Suk; Ma, Lin et al. (2018) Placental Drug Transport-on-a-Chip: A Microengineered In Vitro Model of Transporter-Mediated Drug Efflux in the Human Placental Barrier. Adv Healthc Mater 7:
Whelan, Kelly A; Muir, Amanda B; Nakagawa, Hiroshi (2018) Esophageal 3D Culture Systems as Modeling Tools in Esophageal Epithelial Pathobiology and Personalized Medicine. Cell Mol Gastroenterol Hepatol 5:461-478
Winterbottom, Christopher J; Shah, Rupal J; Patterson, Karen C et al. (2018) Exposure to Ambient Particulate Matter Is Associated With Accelerated Functional Decline in Idiopathic Pulmonary Fibrosis. Chest 153:1221-1228
Chikara, Shireen; Mamidi, Sujan; Sreedasyam, Avinash et al. (2018) Flaxseed Consumption Inhibits Chemically Induced Lung Tumorigenesis and Modulates Expression of Phase II Enzymes and Inflammatory Cytokines in A/J Mice. Cancer Prev Res (Phila) 11:27-37
Friedman, Elliot S; Bittinger, Kyle; Esipova, Tatiana V et al. (2018) Microbes vs. chemistry in the origin of the anaerobic gut lumen. Proc Natl Acad Sci U S A 115:4170-4175
Sullivan, John; Croisant, Sharon; Howarth, Marilyn et al. (2018) Implications of the GC-HARMS Fishermen's Citizen Science Network: Issues Raised, Lessons Learned, and Next Steps for the Network and Citizen Science. New Solut :1048291118810871
Shastri, Nishita; Tsai, Yu-Chen; Hile, Suzanne et al. (2018) Genome-wide Identification of Structure-Forming Repeats as Principal Sites of Fork Collapse upon ATR Inhibition. Mol Cell 72:222-238.e11
Pietrofesa, Ralph A; Chatterjee, Shampa; Park, Kyewon et al. (2018) Synthetic Lignan Secoisolariciresinol Diglucoside (LGM2605) Reduces Asbestos-Induced Cytotoxicity in an Nrf2-Dependent and -Independent Manner. Antioxidants (Basel) 7:

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