Project Grant R21EB035208
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $399,958 to Mabswitch Inc., a minority-owned small business, to assess the feasibility of regulating the activation, effector functions, and cytokine release of chimeric antigen receptor (CAR) T-cell therapies. The project aims to develop a "switchable affinity CAR" (SAEFCAR) that can be controlled by an exogenously administered ligand, potentially mitigating the toxicity...
- The National Cancer Institute awarded a $162,486 Project Grant to Northwestern University to develop "tunable microenvironment-responsive CAR T cells using synthetic gene circuits to enhance potency and safety" for the treatment of ovarian cancer. This grant, funded through the Cancer Research Manpower (CFDA 93.398) program, aims to engineer CAR T cells that can specifically target and treat solid tumors, which have posed challenges for current CAR T cell therapies. The project...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $1,031,566 to Mucommune LLC to develop in vivo-engineered B7-H3 chimeric antigen receptor (CAR) T-cells for ovarian cancer therapy. The project aims to leverage a novel viral vector system to directly engineer circulating T-cells in the body, rather than harvesting, modifying, and expanding them ex vivo. This approach has the potential to reduce the time and cost of CAR-T therapy...
- The National Cancer Institute (NCI), under the Cancer Detection and Diagnosis Research CFDA program (93.394), has awarded a $3,036,844 Project Grant to the University of Southern California (USC) to develop a wireless, wearable thermo-activator device for precise, localized control of chimeric antigen receptor (CAR) T cell therapy in solid tumors. The project aims to overcome limitations of current MRI-guided focused ultrasound approaches by creating a flexible, portable system that can remotely...
- This federal Project Grant award of $1,340,987 from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) aims to revolutionize chimeric antigen receptor (CAR) T-cell therapy by developing a novel CAR-enhancer platform. The platform seeks to augment the functionality and longevity of CAR T-cells, addressing the key challenge of limited durability of response in patients. The specific objectives of this 24-month project are to: 1) Optimize dosing and timing for administering the...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $400,000 to Kure Ai Inc. to develop a novel CAR-T cell therapy product targeting the MR1 antigen expressed on the surface of various tumor cells, including acute myeloid leukemia (AML) and glioblastoma. The key objectives are to: 1) assess MR1 expression in primary patient AML and glioblastoma samples, 2) perform mouse efficacy studies using AML and glioblastoma models, and 3)...
- This $177,180 Project Grant award from the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) to the Fred Hutchinson Cancer Center in Seattle, Washington supports research to improve engineered TCR-T cell therapy for solid tumors. The key goals are to investigate whether engineered TCR-T cells form PD-1+TCF1+ stem-like progenitor exhausted T cell populations in tumor-draining lymph nodes, similar to endogenous tumor-specific T cells. This could impact the long-term persistence...
- This federal Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) to Seattle Children's Hospital, doing business as Seattle Children's Research Institute, supports research to develop a novel CAR T-cell therapy for patients with hepatocellular carcinoma (liver cancer). The $470,759 award, commencing on September 1, 2025, aims to prevent CAR T-cell exhaustion and improve the antitumor activity of GPC3-CAR T-cells through the precise, on-demand control...
- This Cooperative Agreement award from the National Cancer Institute (CFDA 93.395 Cancer Treatment Research) provides $2,054,733 in funding to The General Hospital Corporation (doing business as Massachusetts General Hospital) for a project titled "CAR T Cells Targeting Mesothelin and Secreting Bispecific Antibodies Targeting Fibroblasts in Pancreatic Cancer." The project aims to address key limitations of CAR T cell therapy for solid tumors by developing a novel approach using...
- The National Cancer Institute (NCI) awarded a $402,600 Project Grant under the Cancer Treatment Research program (CFDA 93.395) to the Sloan-Kettering Institute for Cancer Research to develop novel chimeric antigen receptor (CAR) T-cell therapies targeting the U5 small nuclear ribonucleoprotein (U5 snRNP) complex for the treatment of acute myeloid leukemia (AML). The primary goals of this 5-year project are to develop these CAR T-cell therapies and investigate the mechanism by which U5 snRNP is...
COMPUTATIONALLY DESIGNED, SMALL MOLECULE-RESPONSIVE CELL RECEPTORS FOR TREATING SOLID TUMORS - PROJECT SUMMARY CHIMERIC ANTIGEN RECEPTOR T (CAR T) CELL CANCER THERAPIES ARE THWARTED BY THE DIFFICULTY OF TARGETING ANTIGENS ON SOLID TUMOR CELLS. ARCHETYPAL CAR-BINDING TUMOR CELL SURFACE PROTEINS ARE NOT UNIQUE TO TUMOR CELLS AND CAN ALSO BE FOUND ON HOST CELLS. FURTHER, SOLID TUMOR CELLS EXPRESS THESE ANTIGENS AT DIFFERENT LEVELS, EVEN WITHIN ONE TUMOR. IN THIS COMPLEX AND IMMUNOSUPPRESSIVE ENVIRONMENT, THE STANDARD CAR T STRATEGY OF TARGETING TUMOR CELL SURFACE PROTEINS IS INSUFFICIENT AND RESULTS IN OFF-TUMOR CAR T CELL BINDING AND ACTIVATION, LEADING ULTIMATELY TO T CELL EXHAUSTION. TO SOLVE THIS PROBLEM, WE PROPOSE A MODULAR, LOGIC-GATED SPLIT CAR FORMAT THAT CAN RESPOND TO THE COMBINATION OF TUMOR CELL SURFACE PROTEINS AND METABOLITES ENRICHED IN THE TME BY CLUSTERING INTRACELLULAR DOMAINS TO ACTIVATE T CELL SIGNALING PATHWAYS. THIS FORMAT ALLOWS FOR CAR T CELLS TO ACTIVATE THE PRODUCTION OF CYTOKINES, CELL ADHESION PROTEINS, AND OTHER TUMOR DESTRUCTION MODALITIES ONLY AFTER LOCALIZING TO THE TME. THE PROPOSAL HAS THREE AIMS. IN AIM 1, WE WILL ESTABLISH THE SPLIT CAR FORMAT FOR TARGETING SOLID TUMORS, WHICH INCLUDES TWO SYNTHETIC RECEPTORS THAT ARE EACH FUSED TO COMPATIBLE INTRACELLULAR CO-STIMULATORY DOMAINS AND CYTOKINE ENGAGEMENT DOMAINS. ONE RECEPTOR, ENGINEERED FROM THE BLUEPRINT OF THE HUMAN GABAB G-PROTEIN COUPLED RECEPTOR (GPCR), WILL FUNCTION AS A SMALL MOLECULE "SENSOR RECEPTOR"; ITS "PARTNER RECEPTOR" WILL BIND TO A TUMOR CELL SURFACE PROTEIN AS WELL AS THE AGONIST-BOUND FORM OF THE FIRST RECEPTOR. WHEN THE PAIRED RECEPTORS ARE BOUND TO THE EXTRACELLULAR AGONIST AND THE TUMOR CELL SURFACE PROTEIN, THEIR CO-STIMULATORY DOMAINS WILL LOCALIZE TOGETHER INSIDE THE CELL TO ACTIVATE NFAT SIGNALING IN JURKAT REPORTER CELLS. IN AIM 2, SIMULTANEOUSLY WITH AIM 1, WE WILL ADAPT THE SENSOR RECEPTORS TO BIND AND RESPOND TO TME METABOLITES BY DEVELOPING A COMPUTATIONAL PROTEIN DESIGN PROTOCOL TO REENGINEER THEIR BINDING SITES. WE WILL SCREEN THE DESIGNED PROTEIN LIBRARY TO ISOLATE TME METABOLITE-RESPONSIVE CARS AND TUNE THEIR BINDING FOR PHYSIOLOGICALLY RELEVANT METABOLITE CONCENTRATIONS USING ESTABLISHED EXPERIMENTAL PROTEIN ENGINEERING METHODS. IN PRELIMINARY DATA, WE HAVE PROTOTYPED A COMPUTATIONAL DESIGN STRATEGY AND TME SENSOR RECEPTOR FORMAT USING HOMOLOGOUS MODEL RECEPTORS. IN THE FINAL AIM, WE WILL COMBINE THE REDESIGNED TME METABOLITE RECEPTORS WITH A HER2+ BREAST CANCER-SPECIFIC PARTNER RECEPTOR TO DEPLOY THE SPLIT CARS IN PRIMARY HUMAN T CELLS CO-CULTURED WITH HER2+ BREAST TUMOR CELLS AND MONITOR T CELL ACTIVATION AND TUMOR CELL LYSIS AS A PROXY FOR CAR T EFFICACY. FOLLOWING THE SUCCESSFUL APPLICATION OF OUR CAR T STRATEGY IN CELL CULTURE AS DESCRIBED IN THIS PROPOSAL, WE WILL NEXT COLLABORATE WITH LEADING T CELL BIOLOGISTS AT OUR UNIVERSITY TO DEPLOY THE RECEPTORS IN A PRECLINICAL HUMANIZED MOUSE MODEL TO EVALUATE CAR T EFFICACY IN VIVO. OUR PROPOSED CAR T CELL THERAPY PLATFORM IS UNIQUE IN ITS CAPACITY TO BIND TO A BOTH AN ENDOGENOUS TME METABOLITE AND A TUMOR CELL SURFACE MARKER TO ELICIT A PROGRAMMABLE INTRACELLULAR T CELL ACTIVATION RESPONSE.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $238.9k | 4/7/25 | ||
| Not listed | $236.8k | 5/31/24 | ||
| Not listed | $236.8k | 5/31/24 |