The Genetically Modified Mice Shared Service provides members of the Cancer Center and other University researchers access to transgenic animal technology in a n efficient cost-saving manner. This core allows investigators to use transgenic mice and, beginning in November 1997, the service will be able to assist investigators in producing new mouse mutants by gene targeting in embryonic stem (ES) cells. The service also will provide gene targeting technology for ES cell research. During the last year and a half, services have been expanded by compiling information on other molecularly altered mice that are available. The shared service personnel assist in obtaining the mice and maintaining and screening them. The goal is to help investigators identify or develop models to address their specific cancer research. Since developing or establishing colonies of these special mice is very expensive, the shared service centralizes these efforts, thus reducing some of the large start-up costs that occur when developing animal models. Importantly, this facility allows individuals who have not previously worked with mouse models to be guided in their use. As more investigators have come to realize the power of these systems, use of this service has increased each year, during the first three years of existence.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
3P30CA023074-22S2
Application #
6217334
Study Section
Project Start
1999-07-01
Project End
2000-06-30
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
22
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of Arizona
Department
Type
DUNS #
City
Tucson
State
AZ
Country
United States
Zip Code
85721
Nguyen, Mike M; Martinez, Jessica A; Hsu, Chiu-Hsieh et al. (2018) Bioactivity and prostate tissue distribution of metformin in a preprostatectomy prostate cancer cohort. Eur J Cancer Prev 27:557-562
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Jones, Kyle M; Pagel, Mark D; Cárdenas-Rodríguez, Julio (2018) Linearization improves the repeatability of quantitative dynamic contrast-enhanced MRI. Magn Reson Imaging 47:16-24
Bea, Jennifer W; Funk, Janet; Hetherington-Rauth, Megan et al. (2018) Anthropometry Versus Imaging for Prediction of Inflammation Among Hispanic Girls. Obesity (Silver Spring) 26:1594-1602
Hornbrook, Mark C; Cobb, Martha D; Tallman, Nancy J et al. (2018) Costs of an ostomy self-management training program for cancer survivors. Psychooncology 27:879-885
Nakamya, Mary F; Ayoola, Moses B; Park, Seongbin et al. (2018) The Role of Cadaverine Synthesis on Pneumococcal Capsule and Protein Expression. Med Sci (Basel) 6:
Loescher, Lois J; Rains, Stephen A; Kramer, Sandra S et al. (2018) A Systematic Review of Interventions to Enhance Healthy Lifestyle Behaviors in Adolescents Delivered via Mobile Phone Text Messaging. Am J Health Promot 32:865-879
Knudsen, Erik S; Balaji, Uthra; Mannakee, Brian et al. (2018) Pancreatic cancer cell lines as patient-derived avatars: genetic characterisation and functional utility. Gut 67:508-520
Boese, Cody J; Nye, Jonathan; Buster, Daniel W et al. (2018) Asterless is a Polo-like kinase 4 substrate that both activates and inhibits kinase activity depending on its phosphorylation state. Mol Biol Cell 29:2874-2886

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