Project Grant R43AI170407
- This $2,263,983 Project Grant award, funded by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), supports research to develop "engineered regulatory T cells (Tregs)" as an immunotherapy for type 1 diabetes. The central goal is to create antigen-specific Tregs that can more effectively suppress the autoimmune destruction of insulin-producing beta cells. The research...
- This Project Grant award of $303,274 from the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research program (CFDA 93.855) supports Antiger Therapeutics Inc., a startup biotech company, in developing targeted immunotherapies for Type 1 Diabetes (T1D). The primary objective is to engineer Peptide-HLA-DQ8 complex biologics that can selectively block the pathogenic T cells responsible for the autoimmune response in T1D. This innovative...
- This $372,067 Project Grant awarded by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), supports the development of an immune evasive stem cell line for type 1 diabetes regenerative therapy. The grant recipient, Aleutian Therapeutics, Inc., a biotechnology company in Los Angeles, California, is conducting research to create gene editing technologies that enable allogeneic...
- The National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), awarded a $621,794 Project Grant to Islex Therapeutics, LLC on August 1, 2025. The grant supports the preclinical development of a therapeutic antibody for treating type 1 diabetes (T1D), a chronic autoimmune disease affecting approximately 1.5 million Americans. The objective is to establish proof-of-principle for a humanized...
- The National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), awarded a $700,000 Project Grant to SNC Therapeutics, Inc. The grant supports the development of a tolerogenic nanotherapy to delay the onset of Type 1 Diabetes (T1D). The project aims to demonstrate that subcutaneous administration of rapamycin-loaded polymersomes can induce antigen-specific tolerance and delay T1D onset in...
- This Project Grant award from the National Institute of Allergy and Infectious Diseases (CFDA 93.855 - Allergy and Infectious Diseases Research) provides $528,157 to The University of Texas MD Anderson Cancer Center to develop innovative AI-based methods for discovering and optimizing T cell receptors (TCRs) for use in T cell engager therapies and spatial TCR sequencing-based antigen discovery. Specifically, the project will use the researchers' existing "PMTNet-OMNI" deep learning...
- This Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), provides $298,364 in funding to Immunoshield Therapeutics Inc. to investigate optimal islet density and dosage within macroencapsulation devices for clinical islet transplantation to treat type 1 diabetes. The research aims to address limitations in current macroencapsulation approaches, such as...
- This Project Grant award from the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK), under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847), provides $199,258 to The Leland Stanford Junior University to conduct research aimed at advancing cell-based therapies for Type 1 Diabetes Mellitus (T1D). The key objectives are to: 1) establish effective, non-toxic strategies to induce immune tolerance toward donor tissues for islet cell...
- This $414,803 Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) supports research by the Massachusetts Institute of Technology (MIT) to develop improved T cell receptor (TCR) engineering strategies for TCR-T cell cancer immunotherapy. The key products and services to be delivered under this grant include: Implementing high-throughput library screens of TCR constant region variants to identify mutations that can improve TCR signaling strength, with...
- The federal Project Grant award R43DK137616 for $275,766.00 was provided by the National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) under the Diabetes, Digestive, and Kidney Diseases Extramural Research program (CFDA 93.847). The award funds Biosurfaces Inc., a for-profit medical device company, to develop and evaluate an implantable, electrospun cell chamber device loaded with human pancreatic islets. The device aims to provide an immune-protected environment to support...
ENGINEERED TCR-TREG CELL THERAPIES TARGETING TYPE 1 DIABETES AUTOANTIGENS - PROJECT SUMMARY PROJECT TITLE: ENGINEERED TCR-TREG CELL THERAPIES TARGETING TYPE 1 DIABETES AUTOANTIGENS ORGANIZATION: GIGAMUNE INC. PI: MATTHEW J SPINDLER, PH.D. ENGINEERED ADOPTIVE CELL THERAPIES INCLUDING CAR-T AND TCR-T CELL THERAPIES HAVE SHOWN STRONG CLINICAL RESPONSES IN CANCER PATIENTS WITH FIVE FDA APPROVED CAR-T CELL THERAPIES FOR HEMATOLOGICAL CANCERS AND NUMEROUS TCR-T CELL CLINICAL TRIALS ONGOING FOR THE TREATMENT OF SOLID TUMORS. THESE NEW DRUGS HAVE ALL LEVERAGED ENGINEERED CYTOTOXIC T CELLS AND ARE DESIGNED TO DIRECTLY KILL CANCER CELLS. IN CONTRAST TO CYTOTOXIC T CELLS, TREGS FUNCTION TO LOCALLY SUPPRESS IMMUNE RESPONSES THROUGH ANTIGEN-SPECIFIC ACTIVITY. TCR ENGINEERED REGULATORY T CELLS (TCR-TREGS) COULD BE USED FOR THE TREATMENT OF PATIENTS WITH AUTOIMMUNE DISORDERS, NOT FOR KILLING TARGET CELLS BUT RATHER FOR PREVENTING CELLS FROM BEING KILLED. HOWEVER, IN ORDER TO DEVELOP ENGINEERED TCR-TREG CELL THERAPIES, THERE IS A CRITICAL NEED IN IDENTIFYING AUTOANTIGEN REACTIVE TCRS TO SPECIFICALLY DIRECT TREG ACTIVITY INTO PANCREATIC ISLETS WHERE THEY CAN LOCALLY SUPPRESS THE AUTOREACTIVE CYTOTOXIC T CELLS CAUSING DISEASE PATHOLOGY. TYPE 1 DIABETES (T1D) AUTOANTIGENS, INCLUDING PREPROINSULIN, IA-2, AND GAD65, ARE IDEAL TCR-TREG CELL TARGETS AS THEY ARE SPECIFICALLY EXPRESSED IN PANCREATIC ISLETS AND BETA (B)-CELLS. THESE AUTOANTIGENS ARE COMMONLY TARGETED BY CD4 AND CD8 T CELLS IN T1D PATIENTS WITH PEPTIDE EPITOPES PRESENTED ACROSS MANY HLA ALLELES. IMPORTANTLY, RECENT STUDIES HAVE DEMONSTRATED THAT TCR CLONOTYPES ISOLATED FROM CD8+ T CELLS CAN REDIRECT TREG SUPPRESSIVE ACTIVITY TO CLASS I HLA PRESENTED PEPTIDES. THIS SUGGESTS THAT ENGINEERED TCR-TREGS TARGETING T1D AUTOANTIGENS COULD SUPPRESS AUTOREACTIVE CYTOTOXIC T CELLS WITHIN THE PANCREATIC ISLETS. THEREFORE, A CATALOG OF TCR-TREG CELL THERAPIES TARGETING T1D AUTOANTIGENS ACROSS DIFFERENT HLA ALLELES WOULD PROVIDE A BROADLY EFFECTIVE TREATMENT FOR T1D PATIENTS. THE SPECIFIC AIM OF THIS PHASE I SBIR PROJECT IS TO DEVELOP A CATALOG OF NATURAL HUMAN TCRS THAT TARGET T1D AUTOANTIGENS FOR USE IN TCR-ENGINEERED TREG CELL THERAPIES. GIGAMUNE'S UNIQUE TECHNOLOGY USES MICROFLUIDICS, GENOMICS, AND MAMMALIAN DISPLAY TO GENERATE MILLIONS-DIVERSE, NATIVELY PAIRED TCRAB REPERTOIRE LIBRARIES. THE TCRAB LIBRARIES ARE IMMORTAL, ENABLING REPEATED EXPERIMENTATION WITH A PANEL OF ANTIGENS. THIS WILL EXPEDITE DISCOVERY OF RARE ANTI-T1D TCRS. THE PROJECT IS LED BY DR. MATTHEW J. SPINDLER, AN EXPERT IN IMMUNOGENOMICS AND INVENTOR OF THE GIGAMUNE TECHNOLOGY AND SUPPORTED BY SERIAL ENTREPRENEUR AND CO-FOUNDER DAVID JOHNSON (GIGAGEN). AFTER COMPLETING THIS PHASE I SBIR PROJECT, GIGAMUNE WILL FURTHER DEVELOP PROMISING TCRS AS TCR-TREG CELL THERAPIES, THROUGH IN VIVO EFFICACY STUDIES, IN VITRO SAFETY STUDIES, AND MANUFACTURING DEVELOPMENT.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 4/9/25 | ||
| Not listed | $55.0k | 5/3/23 | ||
| Not listed | $300.0k | 8/11/22 | ||
| Not listed | $300.0k | 8/11/22 | ||
| Not listed | $300.0k | 8/11/22 |