News Release

UTSA research collaboration moving forward with new approach to kill cancer cells

Grant and Award Announcement

University of Texas at San Antonio

(San Antonio, September 1, 2021) The University of Texas at San Antonio (UTSA) has been awarded a five-year $3.2 million grant from the Cancer Prevention & Research Institute of Texas (CPRIT). The money will go toward work at The Center for Innovative Drug Discovery (CIDD), a joint venture between the university and UT Health San Antonio, and a place where UTSA continues to make important contributions to the fight against cancer. 

The CIDD will use its new CPRIT funding to develop strategies and technologies to target cancer-related proteins previously considered ‘undruggable’. An innovative method they will develop is the Proteolysis-Targeting Chimeras (PROTAC) platform. Stanton McHardy, UTSA associate professor of  chemistry  and athe CIDD director, explains that part of what makes this approach effective is its ability to promote degradation of the targeted cancer protein and kill the cancer cell. 

“Obviously cancer is a major medical burden to our society,” said McHardy. “Our ultimate goal is to discover the next generation of tangible, pre-clinical cancer therapeutics and advance our programs and drug candidates to a stage where they can be developed into clinical therapies to treat cancer.”

This joint venture between UTSA and UT Health has two facilities. The first, which is located at UTSA and led by McHardy, is the Medicinal Chemistry and Synthesis Core Facility. The second is the High-Throughput Screening Facility (HTSF) at UT Health, where Matt Hart is the director. Hart is also Associate Professor/Research in the Department of Biochemistry and Structural Biology at UT Health San Antonio.

UTSA’s Doug Frantz, the Max and Minnie Tomerlin Voelcker Distinguished Professor of Chemistry is a CIDD co-founder.

“To be selected for the CPRIT grant, we proposed a focused and resource-intensive core facility to offer CIDD collaborators and clients a one-of-a-kind capability in Texas, providing PROTAC design, synthesis and screening, an approach that is applicable to multiple types of cancers and cancer targets,” McHardy said.

The new grant is the second from CPRIT awarded to CIDD. The organization received a five-year $4.6 million grant from CPRIT in 2016 to grow and support The center’s cancer research portfolio of small molecule drug discovery programs.

That funding enabled CIDD to establish 59 new cancer drug discovery programs. The Center also executed research on triple-negative breast cancers, ovarian cancers, oral cancers, brain cancers (Glioblastomas), liver cancers and childhood cancers. CIDD leaders also collaborated with Texas-based cancer researchers and institutions, securing more than $34 million in funding for collaborative cancer grants. 

McHardy said the CIDD’s intent is to provide a diverse array of core facilities and expertise to facilitate the translation of basic scientific discoveries into tangible pre-clinical candidate drugs that can be further developed into clinical therapies for human disease.

In addition to making important contributions toward treating cancer, the CIDD is having an enormous impact on UTSA students by providing a distinctive research-and-learning platform where they can learn pharmaceutical-industry concepts and techniques used in drug discovery. 

“Ultimately, this has provided a ‘lab to career’ transition for our UTSA students, who are being employed by leading pharmaceutical and biotechnology companies,” McHardy said.

McHardy and Frantz also credit The Max and Minnie Tomerlin Voelcker Fund for supporting CIDD's drug discovery and educational missions through substantial philanthropic gifts over the past 10 years.

“This latest award from CPRIT to the CIDD is a testimony of how we have been able to leverage these gifts to catalyze additional financial support through various state and federal funding agencies to further the return on their initial investments in our faculty and students,” said Frantz.

 

 

 


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