The major goal of the NYU NIEHS Center Pilot Project Program (PPP) is to promote both the Center's long- range research interests and its short-term mission. In the process of achieving these major goals, the PPP emphasizes collaboration between Center members and the NYU community, encourages Center investigators to explore new research initiatives, and motivates new investigators to establish independent research in the Environmental Health Sciences. Awarded Pilot Projects are judged based upon the likelihood that the proposed research would yield NIEHS R01 funding. In the last funding cycle of the Center grant (2012- 2016) Pilot funds resulted in a substantial number of NIEHS awards that greatly exceeded the money spent for Pilot Projects. The research interests of the Center are four-fold: 1) to understand the mechanisms of action, component composition, adverse health effects, mitigation, and risks of ambient pollution exposures; 2) to understand the molecular mechanisms of metal toxicity and carcinogenicity; 3) to understand the role of DNA damage and DNA repair in environment factor-induced carcinogenesis and cancer development; and 4) to explore the epigenetic responses to environmental exposure. The PPP will achieve these goals by: issuing RFAs, which are formulated with the input from our Center Director and Internal Advisory Committee (IAC) members, conducting the review process via a modified NIH system, and making funding decisions following scientific peer review and IAC input. Dr. Tang monitors the Pilot Project research conducted by the investigators on a regular basis and reports any interesting results obtained to the IAC, particularly the generation of preliminary data that can be useful for an NIEHS grant application. We also require each Pilot Project grant recipient to prepare an R01 type grant application with the preliminary data that has been acquired as a result of Pilot Project funding, and each recipient must also submit a final report to be included with the annual NIEHS Center progress report.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Center Core Grants (P30)
Project #
5P30ES000260-54
Application #
9491814
Study Section
Environmental Health Sciences Review Committee (EHS)
Project Start
Project End
Budget Start
2018-04-01
Budget End
2019-03-31
Support Year
54
Fiscal Year
2018
Total Cost
Indirect Cost
Name
New York University
Department
Type
DUNS #
121911077
City
New York
State
NY
Country
United States
Zip Code
10016
Wang, Sophia S; Carrington, Mary; Berndt, Sonja I et al. (2018) HLA Class I and II Diversity Contributes to the Etiologic Heterogeneity of Non-Hodgkin Lymphoma Subtypes. Cancer Res 78:4086-4096
Church, Jamie S; Tijerina, Pamella B; Emerson, Felicity J et al. (2018) Perinatal exposure to concentrated ambient particulates results in autism-like behavioral deficits in adult mice. Neurotoxicology 65:231-240
Jin, Honglei; Sun, Wenrui; Zhang, Yuanmei et al. (2018) MicroRNA-411 Downregulation Enhances Tumor Growth by Upregulating MLLT11 Expression in Human Bladder Cancer. Mol Ther Nucleic Acids 11:312-322
Chen, Danqi; Fang, Lei; Li, Hongjie et al. (2018) The effects of acetaldehyde exposure on histone modifications and chromatin structure in human lung bronchial epithelial cells. Environ Mol Mutagen 59:375-385
Hua, Xiaohui; Xu, Jiheng; Deng, Xu et al. (2018) New compound ChlA-F induces autophagy-dependent anti-cancer effect via upregulating Sestrin-2 in human bladder cancer. Cancer Lett 436:38-51
Choi, Byeong Hyeok; Philips, Mark R; Chen, Yuan et al. (2018) K-Ras Lys-42 is crucial for its signaling, cell migration, and invasion. J Biol Chem 293:17574-17581
Peng, Minggang; Wang, Jingjing; Zhang, Dongyun et al. (2018) PHLPP2 stabilization by p27 mediates its inhibition of bladder cancer invasion by promoting autophagic degradation of MMP2 protein. Oncogene :
Jose, Cynthia C; Jagannathan, Lakshmanan; Tanwar, Vinay S et al. (2018) Nickel exposure induces persistent mesenchymal phenotype in human lung epithelial cells through epigenetic activation of ZEB1. Mol Carcinog 57:794-806
Choi, Byeong Hyeok; Chen, Changyan; Philips, Mark et al. (2018) RAS GTPases are modified by SUMOylation. Oncotarget 9:4440-4450
Li, Xin; Tian, Zhongxian; Jin, Honglei et al. (2018) Decreased c-Myc mRNA Stability via the MicroRNA 141-3p/AUF1 Axis Is Crucial for p63? Inhibition of Cyclin D1 Gene Transcription and Bladder Cancer Cell Tumorigenicity. Mol Cell Biol 38:

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