Colorectal cancer (CRC) is a significant health concern in most industrialized countries. A significant effort has been made in the identification of drug targets for both the prevention and treatment of colorectal cancer over the past decade. Epidemiological, experimental, and clinical studies have demonstrated that there is a significant reduction in risk for colorectal cancer in persons who take nonsteroidal anti-inflammatory drugs (NSAIDs). A large body of genetic and biochemical evidence has demonstrated that the cyclooxygenase-2 (COX-2) enzyme is a promising NSAID target for prevention of colorectal cancer. In COX-2-dependent pathways, NSAIDs suppress colon carcinogenesis through the inhibition of prostaglandin formation. Studies by our group have demonstrated that 1) a synthetic PPARdelta agonist increases the number and size of polyps in Min mice; 2) COX-2 derived PGE2 induces PPARdelta transactivation; 3) PGE2 induces colon cancer cell migration/invasion through a EGFR-PI3k-Akt pathway; 4) NSAIDs downregulate a novel gene NRG-1 (NSAID regulated gene-1), which is highly expressed in human colorectal tumor tissue and is up-regulated by Ras. However, the precise mechanisms for the COX-2-dependent or -independent effects of NSAIDs on colorectal carcinogenesis are not clear. The experiments we propose here will explore these issues further and attempt to understand the mechanisms by which NSAIDs affect colorectal biology. Our experimental approaches will focus on the following three specific aims: 1) Determine the biologic function of PPARdelta in the intestinal polyp formation; 2) Characterize downstream pathways of COX-2 derived PGE2 in colorectal cancer biology; and 3) Characterize the biologic function of the NSAID-regulated gene-1 (NRG-1) in colorectal cancer formation.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program Projects (P01)
Project #
5P01CA077839-10
Application #
7616812
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2008-05-01
Budget End
2009-04-30
Support Year
10
Fiscal Year
2008
Total Cost
$181,147
Indirect Cost
Name
Vanderbilt University Medical Center
Department
Type
DUNS #
004413456
City
Nashville
State
TN
Country
United States
Zip Code
37212
Hsu, Alice H; Lum, Michelle A; Shim, Kang-Sup et al. (2018) Crosstalk between PKC? and PI3K/AKT Signaling Is Tumor Suppressive in the Endometrium. Cell Rep 24:655-669
Liang, Xiaohuan; Daikoku, Takiko; Terakawa, Jumpei et al. (2018) The uterine epithelial loss of Pten is inefficient to induce endometrial cancer with intact stromal Pten. PLoS Genet 14:e1007630
Wang, Dingzhi; DuBois, Raymond N (2018) Role of prostanoids in gastrointestinal cancer. J Clin Invest 128:2732-2742
Yuan, Jia; Deng, Wenbo; Cha, Jeeyeon et al. (2018) Tridimensional visualization reveals direct communication between the embryo and glands critical for implantation. Nat Commun 9:603
Cha, Jeeyeon; Dey, Sudhansu K (2017) Hunting for Fox(A2): Dual roles in female fertility. Proc Natl Acad Sci U S A 114:1226-1228
Wang, Dingzhi; Sun, Haiyan; Wei, Jie et al. (2017) CXCL1 Is Critical for Premetastatic Niche Formation and Metastasis in Colorectal Cancer. Cancer Res 77:3655-3665
Mendelson, Karen; Pandey, Suveg; Hisano, Yu et al. (2017) The ceramide synthase 2b gene mediates genomic sensing and regulation of sphingosine levels during zebrafish embryogenesis. Elife 6:
Yanagida, Keisuke; Hla, Timothy (2017) Vascular and Immunobiology of the Circulatory Sphingosine 1-Phosphate Gradient. Annu Rev Physiol 79:67-91
Wang, Dingzhi; DuBois, Raymond N (2016) The Role of Prostaglandin E(2) in Tumor-Associated Immunosuppression. Trends Mol Med 22:1-3
Reddy, Vishruth K; Short, Sarah P; Barrett, Caitlyn W et al. (2016) BVES Regulates Intestinal Stem Cell Programs and Intestinal Crypt Viability after Radiation. Stem Cells 34:1626-36

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