Research in animals is critical for investigating basic cancer biology, as well as development of diagnostic and therapeutic modalities for human cancer. Thus, the major goal of the program in Cancer Biology in Animals is to utilize key strengths at UC Davis in animal research on disease mechanisms relevant to cancer. The Davis campus excels in the availability of a large number of diverse animal models, high levels of veterinary expertise, and superb facilities for care and housing of many species. Also, this program will promote collaborative efforts among investigators on the Davis campus, the Medical Center in Sacramento, and Lawrence-Livermore National Labs for preclinical research, i.e., bridging tumorigenesis research in the animal model research with the human clinical setting. Leadership for this Program is provided by Drs. Paul Luciw and Robert Cardiff, who are senior investigators in the new Center for Comparative Medicine on the UC Davis campus. Both have extensive research experience on tumorigenic retroviruses; Dr. Luciw's expertise in molecular virology is complemented by Dr. Cardiff's expertise in pathology and cancer biology. Collectively, both Program leaders direct multidisciplinary basic research programs that involve collaborators and resources at the Center for Comparative Medicine, the California Regional Primate Research Center, and the new UCD Mouse Biology Program. Research activities on cancer in the Program in Cancer Biology in Animals are organized into three investigational themes: 1) Tumor Biology and Mechanisms of Carcinogenesis: 2) Infectious Agents and Cancer in Animal Models; 3) Preclinical Assessment of Novel Anti- Cancer Therapeutics; 2) Infectious Agents and Cancer in Animal Models; 3) Preclinical Assessment of Noel Anti-Cancer Therapeutics and Diagnostics. In addition, this program encompasses a critical resource theme-the Mouse Biology Program. Many individual research activities within each of these themes are highly interactive with activities in the other Programs (i.e., Molecular Oncology, Clinical Therapeutics, Prostate Cancer, Biomedical Technology, and Cancer Control).

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
1P30CA093373-01
Application #
6599357
Study Section
Subcommittee E - Prevention &Control (NCI)
Project Start
2002-07-01
Project End
2005-06-30
Budget Start
Budget End
Support Year
1
Fiscal Year
2002
Total Cost
Indirect Cost
Name
University of California Davis
Department
Type
DUNS #
094878337
City
Davis
State
CA
Country
United States
Zip Code
95618
Wang, Minan; Yao, Li-Chin; Cheng, Mingshan et al. (2018) Humanized mice in studying efficacy and mechanisms of PD-1-targeted cancer immunotherapy. FASEB J 32:1537-1549
York, D; Sproul, C D; Chikere, N et al. (2018) Expression and targeting of transcription factor ATF5 in dog gliomas. Vet Comp Oncol 16:102-107
Fletcher, Kyle; Klosterman, Steven J; Derevnina, Lida et al. (2018) Comparative genomics of downy mildews reveals potential adaptations to biotrophy. BMC Genomics 19:851
Wang, Fuli; Zhang, Hongyong; Ma, Ai-Hong et al. (2018) COX-2/sEH Dual Inhibitor PTUPB Potentiates the Antitumor Efficacy of Cisplatin. Mol Cancer Ther 17:474-483
Yuan, Ye; He, Yixuan; Bo, Ruonan et al. (2018) A facile approach to fabricate self-assembled magnetic nanotheranostics for drug delivery and imaging. Nanoscale 10:21634-21639
Seo, Jai Woong; Tavaré, Richard; Mahakian, Lisa M et al. (2018) CD8+ T-Cell Density Imaging with 64Cu-Labeled Cys-Diabody Informs Immunotherapy Protocols. Clin Cancer Res 24:4976-4987
Xue, Xiangdong; Huang, Yee; Bo, Ruonan et al. (2018) Trojan Horse nanotheranostics with dual transformability and multifunctionality for highly effective cancer treatment. Nat Commun 9:3653
Knight, Jennifer F; Sung, Vanessa Y C; Kuzmin, Elena et al. (2018) KIBRA (WWC1) Is a Metastasis Suppressor Gene Affected by Chromosome 5q Loss in Triple-Negative Breast Cancer. Cell Rep 22:3191-3205
Couto, K M; Moore, P F; Zwingenberger, A L et al. (2018) Clinical characteristics and outcome in dogs with small cell T-cell intestinal lymphoma. Vet Comp Oncol 16:337-343
Dou, John; Schmidt, Rebecca J; Benke, Kelly S et al. (2018) Cord blood buffy coat DNA methylation is comparable to whole cord blood methylation. Epigenetics 13:108-116

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