The University of Wisconsin Madison has a long and rich history as an international leader in basic, translational and clinical cancer research. Its history reflects the development of two NCI designated cancer research centers founded by Dr. Harold Rusch on the campus of UW Madison. The McArdle Laboratory for Cancer Research was founded in 1940 and the University of Wisconsin Comprehensive Cancer Center was awarded NCI funding as one of the first comprehensive cancer centers in 1973. Today the University of Wisconsin Comprehensive Cancer Center is comprised of 253 members from 52 departments and 9 schools of the University of Wisconsin Madison. The organizational structure that brings together this diverse community of investigators is centered around seven scientific research programs and fifteen Disease Oriented Working Groups. Together the members receive $105M in direct cost funding for cancer related research, $89M is peer-reviewed. $28M is from NCI, $51M from other NIH Institutes, and $10M from other peer-reviewed sources. The three highest goals of the UWCCC, now and for the future, are: 1) to conduct the highest quality research into the origins and control of cancer; 2) to translate these research findings to evaluation in the clinic through well designed clinical trials with corresponding biologic endpoints whenever possible;and 3) to provide the best care possible to all cancer patients by carefully integrating high quality cutting edge care with clinical research in a compassionate and individualized manner. To address these goals during the next grant period, UWCCC priorities for future development will be: * Strengthening of programmatic cancer focused intra- and transdisciplinary basic and clinical research capabilities especially in Aging and Cancer and in Immunology * Focus research on health disparities and the delivery of outstanding cancer care to all populations * Enhancement of research infrastructure by further development of shared resources * Completion of clinical and research facility remodeling and expansions

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
3P30CA014520-36S1
Application #
7920772
Study Section
Subcommittee G - Education (NCI)
Program Officer
Ciolino, Henry P
Project Start
1976-01-01
Project End
2012-03-31
Budget Start
2009-04-01
Budget End
2010-03-31
Support Year
36
Fiscal Year
2009
Total Cost
$59,955
Indirect Cost
Name
University of Wisconsin Madison
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Wu, Yirong; Fan, Jun; Peissig, Peggy et al. (2018) Quantifying predictive capability of electronic health records for the most harmful breast cancer. Proc SPIE Int Soc Opt Eng 10577:
Fu, Anqi; Oberholtzer, Sydney M; Bagheri-Fam, Stefan et al. (2018) Dynamic expression patterns of Irx3 and Irx5 during germline nest breakdown and primordial follicle formation promote follicle survival in mouse ovaries. PLoS Genet 14:e1007488
Ni, Dalong; Jiang, Dawei; Kutyreff, Christopher J et al. (2018) Molybdenum-based nanoclusters act as antioxidants and ameliorate acute kidney injury in mice. Nat Commun 9:5421
Huynh, Mailee; Pak, Chorom; Markovina, Stephanie et al. (2018) Hyaluronan and proteoglycan link protein 1 (HAPLN1) activates bortezomib-resistant NF-?B activity and increases drug resistance in multiple myeloma. J Biol Chem 293:2452-2465
Farrell, Emily; Armstrong, Annie E; Grimes, Adrian C et al. (2018) Transcriptome Analysis of Cardiac Hypertrophic Growth in MYBPC3-Null Mice Suggests Early Responders in Hypertrophic Remodeling. Front Physiol 9:1442
Net, Jose M; Whitman, Gary J; Morris, Elizabteh et al. (2018) Relationships Between Human-Extracted MRI Tumor Phenotypes of Breast Cancer and Clinical Prognostic Indicators Including Receptor Status and Molecular Subtype. Curr Probl Diagn Radiol :
Jiang, Dawei; Ge, Zhilei; Im, Hyung-Jun et al. (2018) DNA origami nanostructures can exhibit preferential renal uptake and alleviate acute kidney injury. Nat Biomed Eng 2:865-877
Seok, Seung-Hyeon; Ma, Zhi-Xiong; Feltenberger, John B et al. (2018) Trace derivatives of kynurenine potently activate the aryl hydrocarbon receptor (AHR). J Biol Chem 293:1994-2005
Chapelin, Fanny; Capitini, Christian M; Ahrens, Eric T (2018) Fluorine-19 MRI for detection and quantification of immune cell therapy for cancer. J Immunother Cancer 6:105
Ni, Dalong; Ferreira, Carolina A; Barnhart, Todd E et al. (2018) Magnetic Targeting of Nanotheranostics Enhances Cerenkov Radiation-Induced Photodynamic Therapy. J Am Chem Soc 140:14971-14979

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