Project Grant R01CA290743
- Federal Project Grant Award Summary The National Cancer Institute awarded Massachusetts General Hospital a $416,818 Project Grant under the Cancer Treatment Research program (CFDA 93.395) for the period August 1, 2025 through July 31, 2027. The award supports preclinical research investigating whether physical activity enhances Chimeric Antigen Receptor (CAR)-T cell immunotherapy effectiveness in metastatic breast cancer by normalizing the tumor microenvironment. The research will employ...
- The National Cancer Institute (NCI) awarded The Regents of the University of California, San Francisco a Project Grant of $680,597 under the Cancer Biology Research program (CFDA 93.396) for the period April 1, 2026 through March 31, 2031. This award supports fundamental research investigating genome-wide CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats) screening in human T cells to identify G-protein coupled receptor (GPCR) pathway targets that enhance chimeric antigen...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) is providing $827,942.00 to the Cleveland Clinic Lerner College of Medicine of Case Western Reserve University to investigate a novel inhibitory receptor that regulates the persistence and function of chimeric antigen receptor (CAR)-engineered T cell therapy for lymphoma. The key objectives are to: 1) examine the causal role of this inhibitory receptor axis in impairing the therapeutic...
- Yale University received a $482,312 Project Grant award from the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395), effective April 2, 2026, through March 31, 2031. The award funds research to develop a novel therapeutic approach for inactivating regulatory T (Treg) cells through targeted protein degradation as a strategy to overcome immunotherapy resistance in cancer patients. The research builds on preliminary findings demonstrating that degradation of...
- This federal Project Grant award from the U.S. Department of Health and Human Services' National Cancer Institute provides $547,519 to Oregon Health & Science University (OHSU) to leverage biologically-specific PET/MRI monitoring and therapeutic modulation of the hypoxic glioblastoma tumor immune microenvironment (TIME) in order to improve outcomes for patients with glioblastoma, an aggressive form of brain cancer. The key objectives are to: 1) Define a biologically-specific imaging...
- This $640,583 federal Project Grant was awarded by the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) to Cold Spring Harbor Laboratory to conduct research aimed at enhancing the efficacy of immunotherapy against metastatic colorectal cancer. The primary goal is to activate the PPARD-CPT1A axis in CD8+ T cells to boost their anti-tumor immunity and improve treatment outcomes for patients with microsatellite stable metastatic colorectal cancer, who typically respond poorly...
- This federal Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $457,683 to the Beckman Research Institute of the City of Hope to develop and evaluate novel "Bio-Beacons" - tumor-targeting bacterial vectors engineered to secrete chemokines and cytokines. The goal is to increase the density of tumor-reactive immune cells, such as CD8 T cells, CD4 T cells, dendritic cells, and natural killer cells, within solid tumors. This is...
- Summary of Federal Project Grant Award Cancure LLC (doing business as Canzx Biotherapeutics) received a $399,444 Project Grant from the National Cancer Institute under the Cancer Detection and Diagnosis Research program (CFDA 93.394) for the period August 1, 2025 through July 31, 2026. The grant funds a feasibility study to develop a novel stimulating agent composed of a soluble peptide and conformational binding agent designed to enhance natural killer (NK) and CD8 T cell-based...
- Federal Project Grant Award Summary The University of Pittsburgh received a $217,600 Project Grant from the National Cancer Institute under the Cancer Research Manpower program (CFDA 93.398), awarded on September 17, 2025, with a completion date of March 31, 2029. This grant supports research investigating the functional consequences of high glucose culture conditions on adoptive T cell therapies for cancer treatment. The research focuses on understanding how elevated glucose levels in in...
- The National Cancer Institute (NCI), under the federal Cancer Biology Research grant program (CFDA 93.396), awarded a $218,089 Project Grant to the University of California, Santa Barbara (UCSB) to develop and evaluate a novel chimeric antigen receptor macrophage (CAR-M) immunotherapy for the treatment of triple-negative breast cancer (TNBC). The project, titled "RAC-Enhanced Chimeric Antigen Receptor-Macrophage (RACE-CAR-M) Immunotherapy for Triple Negative Breast Cancer," aims to...
SUSTAINING ANTITUMOR EFFECTOR CD8+ T CELLS FOR CANCER THERAPY - ANTITUMOR RESPONSES OF CD8+ T CELLS ARE TIGHTLY REGULATED BY DISTINCT METABOLIC FITNESS. IT HAS BEEN REPORTED THAT TERMINALLY DIFFERENTIATED EXHAUSTED T CELLS DISPLAY IMPAIRED MITOCHONDRIAL RESPIRATION AND/OR GLYCOLYSIS AND SUCH LIMITED METABOLIC RESERVE REINFORCES T CELL DYSFUNCTIONALITY ESPECIALLY IN THE TUMOR MICROENVIRONMENT OF ADVANCED CANCER. THE MOLECULAR MECHANISM BY WHICH SUSTAINING METABOLIC FITNESS IN HIGHLY DIFFERENTIATED EFFECTOR T CELLS (TEFF) FOR ENHANCEMENT OF ANTI- TUMOR IMMUNITY HAS BEEN ILL-DEFINED. INTERESTINGLY, INCREASED LEVELS OF GLUTATHIONE (GSH) ARE OBSERVED IN THE MAJORITY OF TUMORS SUCH AS BREAST CANCER AND MELANOMA CONTRIBUTING TO CANCER PROGRESSION AND TREATMENT RESISTANCE IN PART BY PREVENTING GLUTATHIONE PEROXIDASE 4 (GPX4) DEPENDENT FERROPTOSIS, AN IRON-DEPENDENT PROGRAMMED CELL DEATH. HOWEVER, THE ROLE OF THE GSH- GPX4 METABOLIC AXIS IN MODULATING THE ANTITUMOR RESPONSE OF CD8+ T CELLS REMAINS ELUSIVE. BASED ON THE PRELIMINARY RESULTS WE OBTAINED, THE CENTRAL HYPOTHESIS IS THAT SUSTAINING THE GSH-GPX4 AXIS WHILE INACTIVATION OF ADENOSINE A2A RECEPTOR (A2AR) IS CRITICAL FOR THE GENERATION OF LONG-LIVED TEFF FOR DURABLE METABOLIC RESPONSES AGAINST TUMOR CELLS, AND BIOENGINEERING TEFF TO CONDITIONALLY EXPRESS GCLC/GPX4 WITH A2AR INHIBITION IMPROVES IN VIVO PERSISTENCE AND FUNCTION TO PROLONG THE EFFICACY OF ADOPTIVE CELL THERAPY (ACT). TO TEST THIS HYPOTHESIS, WE WILL DEFINE THE DOWNSTREAM METABOLIC AND CELLULAR EFFECTS OF SUSTAINING THE GSH-GPX4 AXIS WHILE INACTIVATION OF A2AR SIGNALING IN TEFF CELLS, AND FURTHER DETERMINE THE SAFETY AND EFFICACY OF ADOPTIVE THERAPY OF MURINE AND HUMAN T CELLS BIOENGINEERED TO EXPRESS GCLC/GPX4 WITH A2AR INHIBITION.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $652.2k | 7/7/25 | ||
| Not listed | $633.4k | 5/17/24 |