Project Grant R21CA292302
- Federal Project Grant Award Summary Albert Einstein College of Medicine received a $431,970 Project Grant from the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395), awarded April 1, 2026, with completion targeted for March 31, 2028. The grant supports research to decipher mechanisms of resistance to anti-TROP2 (tumor-associated glycoprotein 2) antibody-drug conjugate cancer therapy, specifically examining sacituzumab govitecan (SG), which is approved for...
- The National Cancer Institute awarded a $246,362 Project Grant on June 12, 2026, to Sloan-Kettering Institute for Cancer Research under the Cancer Research Manpower program (CFDA 93.398) to support research investigating the evolutionary landscape of BRCA-associated breast cancer and its impact on endocrine therapy resistance. The research will be conducted through May 31, 2031, at the Institute's New York facility. The project delivers comprehensive scientific investigation services focused...
- GRANT AWARD SUMMARY Mayo Clinic received a $412,429 Project Grant from the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395) to conduct research on novel therapeutic combinations for high-grade serous ovarian cancer (HGSOC). The award period extends from August 1, 2025, through July 31, 2027. The research focuses on developing and mechanistically evaluating drug-induced replication stress markers as therapeutic targets, specifically investigating the...
- Federal Project Grant Award Summary The National Cancer Institute awarded a Project Grant of $1.056 million to the Sloan-Kettering Institute for Cancer Research under the Cancer Treatment Research program (CFDA 93.395) to support research on overcoming resistance to targeted therapies in breast cancer. Initiated August 20, 2025, and extending through July 31, 2032, this project delivers fundamental and applied research aimed at understanding and addressing the development of drug resistance in...
- This National Institutes of Health National Cancer Institute Project Grant of $470,532 provides funding from July 1, 2022 to June 30, 2027 to Brigham and Women's Hospital Inc., a subsidiary of Partners Healthcare System Incorporated, to characterize immunometabolic pathways enabled by PARP inhibition in breast cancer. The grant aims to (1) define the mechanisms by which PARP inhibitors induce lipogenic tumor-associated macrophage development, (2) determine how lipogenic macrophages suppress...
- Grant Award Summary The National Cancer Institute awarded a $463,279 Project Grant under the Cancer Treatment Research program (CFDA 93.395) to Dana-Farber Cancer Institute, Inc., effective July 1, 2026, through June 30, 2031. This award supports research into USP1 (Ubiquitin-Specific Peptidase 1) inhibitor-mediated reversal of PARP (Poly-ADP-Ribose Polymerase) inhibitor resistance in high-grade serous ovarian cancer (HGSOC). The research addresses a significant clinical need, as over 50 percent...
- Federal Project Grant Award Summary Beth Israel Deaconess Medical Center, Inc. (BIDMC) received a $470,567 Project Grant (R21) award from the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395) on July 15, 2025, with an ultimate completion date of June 30, 2027. The award funds research to identify molecular features that predict response or resistance to poly (adenosine diphosphate-ribose) polymerase (PARP) inhibitor therapy in metastatic breast cancer patients...
- Federal Project Grant Award Summary The National Cancer Institute's Cancer Treatment Research program (CFDA 93.395) awarded a $164,000 Project Grant to The University of Texas MD Anderson Cancer Center, effective September 1, 2025, through August 31, 2027. This award supports research investigating the clonal determinants of platinum/PARP inhibitor (PARPi) cross-resistance in high-grade serous ovarian cancer (HGSOC). The research utilizes a novel somatic mosaic genetically-engineered mouse model...
- Summary The National Cancer Institute (NCI) awarded The University of Texas MD Anderson Cancer Center a $653,967 Project Grant under the Cancer Treatment Research program (CFDA 93.395) effective March 16, 2026, through February 28, 2031. This research grant supports the investigation of mechanistic basis and therapeutic strategies targeting PPP2R1A mutations in gynecological cancers, specifically uterine serous endometrial carcinoma and ovarian clear cell carcinoma. The funded research will...
- The University of California, San Francisco (UCSF) received a $5.04 million Cooperative Agreement from the National Cancer Institute under the Cancer Centers Support Grants program (CFDA 93.397) awarded August 1, 2025, through July 31, 2030. This award supports the UCSF Cancer Health Disparities (CHD) Specialized Program of Research Excellence (SPORE), which investigates the interplay of tumor genomic and immune characteristics with social and structural drivers of health to improve cancer...
USING PATIENT-DERIVED CO-CULTURE MODELS OF BREAST CANCER TO DEVELOP NEW TREATMENT STRATEGIES TARGETING SUCCINATE SIGNALING. - PROJECT SUMMARY/ABSTRACT: THIS PROPOSAL ADDRESSES THE LACK OF PATIENT-DERIVED MODEL SYSTEMS IN HORMONE RECEPTOR POSITIVE (HR+) BREAST CANCER, AND ALSO THE LACK OF ETHNICALLY REPRESENTATIVE MODELS OF BREAST CANCER. THE MAJORITY OF NEWLY DIAGNOSED BREAST CANCERS (>70%) ARE HR+, AND TWO-THIRDS OF THE ESTIMATED 42,690 BREAST CANCER DEATHS WILL BE FROM HR+ BREAST CANCER. RECURRENT HR+ BREAST CANCER HAS BEEN DIFFICULT TO STUDY GIVEN THE PROLONGED CLINICAL COURSE AND THE LACK OF APPROPRIATE PATIENT-DERIVED MODEL SYSTEMS. THESE MODELS HAVE BEEN DIFFICULT TO DERIVE AND GROW IN THE PAST, WITH LOW TAKE-RATE (~10-20%), AND THE MODELS LOSING THEIR HR EXPRESSION OVER TIME. IN ADDITION, TUMOR EXTRINSIC FACTORS SUCH AS CANCER-ASSOCIATED FIBROBLASTS (CAFS) THAT SIGNIFICANTLY IMPACT TUMOR BIOLOGY AND THERAPY RESPONSES, ARE RARELY INCORPORATED IN STUDIES OR MODELS OF HR+ DISEASE. THEREFORE, TO ADDRESS THIS GAP, WE SET OUT TO DEVELOP MORE REPRESENTATIVE MODELS OF RECURRENT AND RELAPSED HR+ BREAST CANCERS, AND TO INCORPORATE ELEMENTS OF THE TUMOR MICROENVIRONMENT INTO THESE MODELS. TO ACHIEVE THIS, WE HAVE DEVELOPED A METHOD FOR DERIVING HR+ PATIENT-DERIVED MODEL SYSTEMS CONSISTING OF BOTH, PRIMARY PATIENT-DERIVED TUMOR ORGANOIDS (PDOS) ISOLATED FROM RELAPSED AND METASTATIC HR+ TUMORS, AND MATCHING PRIMARY CANCER-ASSOCIATED FIBROBLASTS (CAFS) WITH HIGH TAKE RATE (~50%). THESE MODELS ALSO BETTER REPRESENT THE PATIENTS' ETHNIC AND RACIAL DIVERSITY, AS ~35% OF OUR MODELS ARE FROM UNDERREPRESENTED ETHNICITIES (E.G., AFRICAN-AMERICAN, HISPANIC). USING THESE INNOVATIVE TOOLS, WE HAVE ALREADY IDENTIFIED SUCNR1 AS A DRIVER OF TREATMENT RESISTANCE IN HR+ BREAST CANCER. THESE DATA LED US TO OUR HYPOTHESIS THAT TARGETING SUCNR1, WILL REVERSE TREATMENT RESISTANCE OBSERVED IN METASTATIC HR+ BREAST CANCERS, AND THAT WE CAN USE OUR UNIQUE PDO MODELS AS A PRE-CLINICAL TESTING PLATFORM OF THESE NOVEL TREATMENT STRATEGIES. WE PROPOSE TWO SPECIFIC AIMS: AIM 1 IS A MORE TECHNOLOGY DRIVEN PER THE RFA FOR THIS R21 AND WILL EXPAND THE NUMBER OF AVAILABLE METASTATIC AND RELAPSED HR+ PATIENT-DERIVED MODELS ISOLATED FROM ETHNICALLY DIVERSE PATIENT POPULATIONS. IN AIM 2 WE WILL INVESTIGATE THE THERAPEUTIC TARGETING OF SUCNR1 IN RECURRENT HR+ BREAST CANCER USING OUR PDO MODELS. OUR PROPOSAL IS SIGNIFICANT BECAUSE IT ADDRESSES MULTIPLE FUNDAMENTAL CHALLENGES IN BREAST CANCER TREATMENT AND MANAGEMENT, INCLUDING LACK OF PATIENT-DERIVED MODELS FOR HR+ BREAST CANCER, LACK OF TUMOR MODELS FROM DIVERSE RACIAL BACKGROUNDS, AND CONTRIBUTION OF CAFS TO RESISTANCE. MOST IMPORTANTLY, WE INTEND TO MAKE THESE MODELS AND TOOLS AVAILABLE TO THE WHOLE FIELD, THEREFORE THE IMPACT OF THIS RESEARCH IS WELL BEYOND OUR PROPOSED RESEARCH.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $444.6k | 5/31/24 |