Harold C. Simmons Cancer Center Experimental Therapeutics of Cancer Scientific Program Project Summary/Abstract The Experimental Therapeutics (ET) Program brings together 44 full Simmons Cancer Center (SCC) members, including 13 from basic science departments and 31 from clinical departments, to develop novel therapeutic strategies and to evaluate these approaches by conducting investigator-initiated clinical trials. The program has 27 NCI projects, a lung cancer SPORE, as well as 12 multi-investigator awards. ET Program clinical investigators represent key oncology disciplines, including medical, surgical, pediatrics, and radiation oncology; radiology; and pathology. Investigators in the ET Program are currently supported by over $24.7 million in peer-reviewed funding (total costs) with $7.5 million from the NCI, $4 million from other NIH sources, and $7.3 million from the Cancer Prevention and Research Institute of Texas (CPRIT) The ET Program is designed to provide an organized, science-based conduit for translating SCC discoveries from the scientific programs to the clinic, and to help establish appropriate preclinical models and data to facilitate clinical translation. Likewise, clinical data are then used to form new hypotheses tested by our strong basic science foundation throughout the SCC. The program themes focus on drug (Themes 1,2) and biomarker (Themes 3,4) discovery to identify optimal populations for these new treatments. Theme 1: Molecular Therapeutic Sensitizers Theme 2: Tumor Microenvironment and Protein Therapy Theme 3: Imaging and Drug Delivery Theme 4: Cancer Vulnerabilities The Co-Leaders of the ET Program work together to foster and develop themes, goals, membership, and new collaborations in specific research areas for clinical translation. This process heavily engages SCC disease DOTs (disease oriented teams) to focus specific therapeutics on select cancers, as evidenced by mechanistic- based research where target validation is assessed using pharmacodynamic biomarkers. These activities, in turn, stimulate intra- and inter-programmatic collaborations. The ET Program averages over 100 publications per year, and since 2009 the level of collaborative publications has remained quite high, with 35% intra- programmatic, 34% inter-programmatic and 28% inter-institutional with authors in other NCI-designated cancer centers.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
3P30CA142543-10S3
Application #
10260733
Study Section
Subcommittee I - Transistion to Independence (NCI)
Program Officer
Belin, Precilla L
Project Start
2010-08-03
Project End
2021-07-31
Budget Start
2019-08-01
Budget End
2020-07-31
Support Year
10
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Texas Sw Medical Center Dallas
Department
Type
DUNS #
800771545
City
Dallas
State
TX
Country
United States
Zip Code
75390
Zhou, Heling; Arias-Ramos, Nuria; López-Larrubia, Pilar et al. (2018) Oxygenation Imaging by Nuclear Magnetic Resonance Methods. Methods Mol Biol 1718:297-313
Denman, Deanna C; Baldwin, Austin S; Betts, Andrea C et al. (2018) Reducing ""I Don't Know"" Responses and Missing Survey Data: Implications for Measurement. Med Decis Making 38:673-682
Croessmann, Sarah; Sheehan, Jonathan H; Lee, Kyung-Min et al. (2018) PIK3CA C2 Domain Deletions Hyperactivate Phosphoinositide 3-kinase (PI3K), Generate Oncogene Dependence, and Are Exquisitely Sensitive to PI3K? Inhibitors. Clin Cancer Res 24:1426-1435
Wang, Tao; Lu, Rong; Kapur, Payal et al. (2018) An Empirical Approach Leveraging Tumorgrafts to Dissect the Tumor Microenvironment in Renal Cell Carcinoma Identifies Missing Link to Prognostic Inflammatory Factors. Cancer Discov 8:1142-1155
LaRanger, Ryan; Peters-Hall, Jennifer R; Coquelin, Melissa et al. (2018) Reconstituting Mouse Lungs with Conditionally Reprogrammed Human Bronchial Epithelial Cells. Tissue Eng Part A 24:559-568
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
Kim, Wanil; Shay, Jerry W (2018) Long-range telomere regulation of gene expression: Telomere looping and telomere position effect over long distances (TPE-OLD). Differentiation 99:1-9
Li, Shulong; Yang, Ning; Li, Bin et al. (2018) A pilot study using kernelled support tensor machine for distant failure prediction in lung SBRT. Med Image Anal 50:106-116
Wang, Shidan; Chen, Alyssa; Yang, Lin et al. (2018) Comprehensive analysis of lung cancer pathology images to discover tumor shape and boundary features that predict survival outcome. Sci Rep 8:10393
An, Weiwei; Mason, Ralph P; Lippert, Alexander R (2018) Energy transfer chemiluminescence for ratiometric pH imaging. Org Biomol Chem 16:4176-4182

Showing the most recent 10 out of 501 publications