Public Health Relevance

--Overall The Mays Cancer Center (MCC) at the University of Texas Health San Antonio (UT Health SA) is the National Cancer Institute-designated Cancer Center (NCICC) for a 38-county region of Central and South Texas, a region of 45,926 square miles with 4.9 million individuals who have a unique set of cancer-related challenges. The population in this catchment area is predominantly Hispanic, the fastest growing demographic in the United States (U.S.). The mission of the MCC is to reduce the cancer burden in Central and South Texas through the highest quality cancer care with expanded treatment options from our early phase clinical trials, ground- breaking cancer research aimed at reducing the incidence and mortality of cancer as well as improving treatment options, education of the future leaders of cancer scientists and clinicians, and cancer prevention programs that focus on our unique population. The MCC strives to be the institution of choice for cancer care in South Texas, a highly-productive research institution that attracts and retains the best cancer scientists, is the institution of choice for cancer education, and an organization devoted to reducing the burden of cancer in our region. The MCC has continued its focus on serving our unique South Texas population which is predominantly Hispanic (69%). The population of San Antonio?s metropolitan area is about 63% Hispanic, while parts of South Texas included in our catchment area are more than 90% Hispanic. Our goal is for the MCC to be a national resource where personalized, culturally-sensitive clinical care and scientific discovery will be conducted, focusing on the unique population of San Antonio and South Texas, to be used as the precepts for cancer control for the U.S. which, with changing demographics, will face many of the current challenges of our region in the future.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
2P30CA054174-25
Application #
10025084
Study Section
Subcommittee I - Transistion to Independence (NCI)
Program Officer
Roberson, Sonya
Project Start
1997-08-01
Project End
2025-07-31
Budget Start
2020-08-13
Budget End
2021-07-31
Support Year
25
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Texas Health Science Center
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
800772162
City
San Antonio
State
TX
Country
United States
Zip Code
78229
Du, Liqin; Zhao, Zhenze; Suraokar, Milind et al. (2018) LMO1 functions as an oncogene by regulating TTK expression and correlates with neuroendocrine differentiation of lung cancer. Oncotarget 9:29601-29618
Ankerst, Donna P; Straubinger, Johanna; Selig, Katharina et al. (2018) A Contemporary Prostate Biopsy Risk Calculator Based on Multiple Heterogeneous Cohorts. Eur Urol 74:197-203
Sun, Xiujie; Gupta, Kshama; Wu, Bogang et al. (2018) Tumor-extrinsic discoidin domain receptor 1 promotes mammary tumor growth by regulating adipose stromal interleukin 6 production in mice. J Biol Chem 293:2841-2849
Horning, Aaron M; Wang, Yao; Lin, Che-Kuang et al. (2018) Single-Cell RNA-seq Reveals a Subpopulation of Prostate Cancer Cells with Enhanced Cell-Cycle-Related Transcription and Attenuated Androgen Response. Cancer Res 78:853-864
Gong, Siqi; Tomusange, Khamis; Kulkarni, Viraj et al. (2018) Anti-HIV IgM protects against mucosal SHIV transmission. AIDS 32:F5-F13
Gelfond, Jonathan; Goros, Martin; Hernandez, Brian et al. (2018) A System for an Accountable Data Analysis Process in R. R J 10:6-21
Soteros, Breeanne M; Cong, Qifei; Palmer, Christian R et al. (2018) Sociability and synapse subtype-specific defects in mice lacking SRPX2, a language-associated gene. PLoS One 13:e0199399
Katti, Sachin; Her, Bin; Srivastava, Atul K et al. (2018) High affinity interactions of Pb2+ with synaptotagmin I. Metallomics 10:1211-1222
De La Chapa, Jorge J; Singha, Prajjal Kanti; Lee, Debbie R et al. (2018) Thymol inhibits oral squamous cell carcinoma growth via mitochondria-mediated apoptosis. J Oral Pathol Med 47:674-682
Wang, Zhonghua; Bhattacharya, Akash; White, Tommy et al. (2018) Functionality of Redox-Active Cysteines Is Required for Restriction of Retroviral Replication by SAMHD1. Cell Rep 24:815-823

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