Project Grant R21CA299243
- This Project Grant award from the National Cancer Institute (NCI) under the Cancer Biology Research program (CFDA 93.396) supports fundamental research to develop chimeric antigen receptor (CAR) natural killer (NK) cell therapy as an effective immunotherapy against solid tumors. Awarded to Massachusetts General Hospital on August 6, 2025, with a completion date of July 31, 2028, the research addresses a critical gap in cancer treatment by leveraging NK cells' broad anti-tumor activity and...
- Federal Grant Award Summary Seattle Children's Research Institute received a $470,759 Project Grant from the National Cancer Institute (Cancer Treatment Research program, CFDA 93.395) effective September 1, 2025 through August 31, 2027. The award supports development of an innovative CAR-T (Chimeric Antigen Receptor T-cell) immunotherapy platform designed to overcome T-cell exhaustion in solid tumor treatment, specifically targeting hepatocellular carcinoma patients. The research deliverables...
- Federal Cooperative Agreement Summary The National Cancer Institute awarded a $2,054,733 Cooperative Agreement to Massachusetts General Hospital's Research Management Division, effective September 1, 2025 through August 31, 2028, under the Cancer Treatment Research program (CFDA 93.395). The award supports the development and optimization of novel chimeric antigen receptor (CAR) T cell therapy for pancreatic cancer, specifically advancing MESO-FAP CAR-TEAM cells that simultaneously target...
- The National Cancer Institute awarded J. David Gladstone Institutes a $1.37 million Project Grant under the Cancer Biology Research program (CFDA 93.396) on August 1, 2025, with a completion date of May 31, 2030. This award funds the development of a spatial profiling-based immune hub perturbation platform designed to improve immunotherapy efficacy in colorectal cancer (CRC). The research addresses the limited success of Chimeric Antigen Receptor (CAR) T cell therapies and endogenous T cell...
- Federal Project Grant Award Summary The National Cancer Institute awarded the University of Pittsburgh $379,644 under the Cancer Treatment Research program (CFDA 93.395) to develop cyclic peptide-based adaptors for universal Chimeric Antigen Receptor (CAR) T cell therapies. The research, initiated June 1, 2026, and concluding May 31, 2028, focuses on designing and synthesizing cyclic peptide adaptors that can program SNAP-CAR T cells to recognize multiple cancer antigens. The primary...
- Federal Project Grant Award Summary The National Cancer Institute (NCI) awarded The Children's Hospital of Philadelphia Research Institute a $737,082 Project Grant on May 13, 2026, under the Cancer Treatment Research program (CFDA 93.395) to develop bioinspired virus-like nanovaccine technology designed to enhance chimeric antigen receptor (CAR) T cell therapy efficacy against solid tumors. The primary deliverable is the development of an autologous tumor cell membrane-coated dual CAR and...
- Federal Project Grant Award Summary The University of Chicago received a $651,674 Project Grant from the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395) for the period June 1, 2026 through May 31, 2031. This award supports the development of a novel radioinducible plug-and-play chimeric antigen receptor T (CAR-T) cell system designed to improve the efficacy of combined radiation therapy and immunotherapy for solid tumors. The research addresses the...
- Federal Grant Award Summary The National Cancer Institute awarded a $703,071 Project Grant to the University of Pennsylvania on April 10, 2026, under the Cancer Treatment Research program (CFDA 93.395) to support research defining the determinants of long-term CAR-T (Chimeric Antigen Receptor T-cell) cell persistence in blood cancer treatment. This five-year project, extending through March 31, 2031, will conduct fundamental research to identify the cellular characteristics and mechanisms...
- 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...
- Federal Project Grant Award Summary The National Cancer Institute awarded the University of Southern California a $3,036,844 Project Grant on August 11, 2025, under the Cancer Detection and Diagnosis Research Program (CFDA 93.394) to develop and validate a wireless thermos-activator device for controllable solid tumor immunotherapy. The project addresses critical limitations in Chimeric Antigen Receptor (CAR) T cell therapy by creating a portable, patient-friendly alternative to MRI-guided...
IMAGE-GUIDED ADAPTABLE CAR T CELL THERAPY FOR SOLID TUMORS - PROJECT SUMMARY DESPITE PROMISING RESULTS IN TREATING B CELL MALIGNANCIES, OVER 50% OF PATIENTS UNDERGOING CHIMERIC ANTIGEN RECEPTOR (CAR) T CELL THERAPY EXPERIENCE TUMOR RELAPSE, AND CAR T CELLS HAVE NOT CONSISTENTLY SHOWN EFFECTIVENESS AGAINST SOLID TUMORS. ANTIGEN ESCAPE, T CELL EXHAUSTION, AND SEVERE TOXICITIES REMAIN MAJOR OBSTACLES. THIS PROPOSAL ADDRESSES THESE CHALLENGES BY DEVELOPING AN IMAGE-GUIDED, UNIVERSAL, ADAPTABLE CAR (A-CAR) SYSTEM COMPRISING A TUMOR-TARGETING ADAPTOR MOLECULE FUSED WITH A C-TERMINAL TAG AND A TAG-SPECIFIC CAR ON T CELLS. OUR STEPWISE APPROACH TO IMAGE-GUIDED CAR T CELL THERAPY INVOLVES: (1) IMAGING: PET ASSESSMENT OF ADAPTOR BIODISTRIBUTION USING RADIOLABELED VHH ADAPTORS; (2) TREATMENT: A SINGLE INFUSION OF AUTOLOGOUS TAG-SPECIFIC CAR T CELLS WITH OPTIMIZED VHH ADAPTORS THAT COAT TUMOR CELLS FOR CAR T RECOGNITION; AND (3) ASSESSMENT: MONITORING TUMOR RESPONSE AND CAR T DISTRIBUTION VIA 18F-FDG AND 68GA-DOTATATE PET/CT. THE CLINICALLY APPROVED RADIOTRACER 68GA-DOTATATE TRACKS CAR T CELL EXPANSION AND ACTIVITY AT ON- AND OFF-TUMOR SITES THROUGH BINDING TO SOMATOSTATIN RECEPTOR 2 (SSTR2) CO-EXPRESSED ON CAR T CELLS. THE HIGH SPECIFICITY, AFFINITY, AND FAVORABLE KINETICS OF VHHS MAKE THEM IDEAL FOR PET IMAGING AND AS CAR T CELL ADAPTORS, ENABLING NON-INVASIVE DETECTION OF ANTIGEN EXPRESSION, PATIENT SELECTION, AND PREDICTION OF HOMING SITES AND OFFTUMOR TOXICITY PRIOR TO TREATMENT. THIS PROJECT COMPREHENSIVELY INVESTIGATES VHHS AS CAR T ADAPTORS, INCLUDING PHARMACOKINETIC AND BIODISTRIBUTION CHARACTERIZATION, OPTIMIZATION OF DELIVERY (INTERMITTENT CYCLIC TUMOR TAGGING VS. CONTINUOUS INFUSION) AND DOSING, AND THE POTENTIAL TO MITIGATE T CELL EXHAUSTION AND OVERCOME ANTIGEN ESCAPE THROUGH MULTI-ANTIGEN TARGETING. MOUSE XENOGRAFT AND SYNGENEIC TUMOR MODELS ARE ESSENTIAL FOR THIS WORK, AS THEY ARE THE ONLY SYSTEMS IN WHICH VHH ADAPTOR BIODISTRIBUTION, CAR T CELL TRAFFICKING, TUMOR TARGETING, AND TOXICITY CAN BE EVALUATED TOGETHER IN A LIVING ORGANISM. THESE IN VIVO MODELS ENABLE OPTIMIZATION OF ADAPTOR AND CAR T DOSING, ASSESSMENT OF ANTIGEN ESCAPE AND EXHAUSTION UNDER PHYSIOLOGICAL CONDITIONS, AND VALIDATION OF PET IMAGING AS A PREDICTIVE TOOL - NONE OF WHICH ARE ACHIEVABLE IN CELL CULTURE. BY REFINING VHH AND CAR T DELIVERY GUIDED BY QUANTITATIVE IMAGING, WE SEEK TO ENHANCE EFFICACY AND MINIMIZE OFF-TUMOR TOXICITY, WITH THE ULTIMATE GOAL OF ADVANCING A-CAR THERAPY AGAINST SOLID CANCERS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $415.3k | 6/11/26 |