Project Grant F32CA301603
- This $149,804 Project Grant award from the National Cancer Institute's Cancer Research Manpower program (CFDA 93.398) supports research at the University of Pittsburgh to investigate the impact of the LAG3 receptor on CD8+ T cell motility and migration in the context of cancer immunotherapy. The research aims to elucidate how LAG3 functions to restrict T cell motility, and determine if LAG3 affects CD8+ T cell infiltration and interactions within the tumor microenvironment. The research combines...
- This $549,962 Project Grant award from the National Cancer Institute under the Cancer Biology Research program (CFDA 93.396) aims to determine how antibodies and cellular ligands regulate the immunosuppressive function of Lymphocyte-Activation Gene 3 (LAG3). The research will explore the molecular mechanisms by which LAG3 engages with Major Histocompatibility Complex Type II (MHCII) and Fibrinogen-Like 1 (FGL1) ligands to control T cell activation. The findings are expected to inform the...
- This federal Project Grant award of $398,997 from the National Cancer Institute (CFDA 93.395 Cancer Treatment Research) aims to develop a novel antibody therapy targeting the immune checkpoint receptor LAIR1 (Leukocyte-Associated Immunoglobulin-Like Receptor 1) to overcome tumor-associated macrophage (TAM)-mediated immunosuppression in cancer. The key goals of this 1-year project are to: 1) validate the in vitro binding, specificity, and functional blocking activity of a humanized anti-LAIR1...
- This R03 project grant, awarded by the National Center for Advancing Translational Sciences (NCATS) under CFDA Program 93.350, aims to comprehensively identify metabolic enzymes that control the generation of TCF1+ progenitor CD8+ T cells, which are critical for durable anti-tumor immune responses. The $169,500 award, spanning from September 1, 2024 to August 31, 2026, will fund two key research objectives: Identifying metabolic enzymes whose loss alters T cell differentiation and the TCF1+...
- This federal Project Grant award of $270,981 from the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) supports a five-year research program to investigate resistance mechanisms to anti-PD-1/L1 immunotherapy in hepatobiliary cancers. The key objectives are to: Conduct a Phase 2 trial evaluating an anti-TIGIT plus anti-PD-1 antibody combination in hepatobiliary cancers refractory to PD-1 blockade. Characterize immune and molecular features of anti-PD-1/L1 therapy-resistant...
- This Project Grant award from the National Cancer Institute under CFDA 93.395 - Cancer Treatment Research supports research to advance the understanding of how a novel neoadjuvant therapy using an anti-Semaphorin 4D (anti-Sema4D) antibody in combination with immune checkpoint blockade (ICB) impacts the immune system in patients with refractory melanoma. The $1,419,108 award to Emory University will enable the research team to gain insights into how blocking Sema4D signaling enhances the...
- This Project Grant award from the Defense Health Agency's Military Medical Research and Development program (CFDA 12.420) supports the "INTEGRATED IMMUNOMODULATORY ANALYSIS OF LAG3 INHIBITION IN RENAL CELL CARCINOMA" research project at the Sloan-Kettering Institute for Cancer Research located in New York, NY. The $533,308 award, which commenced on September 1, 2025 and is expected to conclude by August 31, 2029, will enable the institute to conduct advanced biomedical research focused...
- 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...
- This Project Grant award of $754,511 from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) supports research at the Jackson Laboratory to discover host genetic factors that influence response to immune checkpoint inhibitor (ICI) cancer treatments. The project aims to: Expand and refine a mouse experimental platform to map quantitative trait loci (QTLs) associated with ICI response, focusing on defining the genetic mechanisms behind epistatic interactions. Challenge top...
- The federal Project Grant award R01CA289387, totaling $657,121.00, was provided by the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395). The grant supports research conducted by the H. Lee Moffitt Cancer Center and Research Institute Hospital, Inc. in Tampa, Florida to develop a novel dendritic cell therapy for treating leptomeningeal disease (LMD), a severe complication that occurs in 5% of advanced-stage breast cancer patients. The research aims to...
RELATIVE AND SYNERGISTIC CONTRIBUTIONS OF PD1 AND LAG3 ON CD4+ T CONVENTIONAL CELLS IN CANCER - ABSTRACT CELL SURFACE INHIBITORY RECEPTORS (IRS) SUCH AS PROGRAMMED CELL-DEATH-1 (PD1) AND LYMPHOCYTE ACTIVATION GENE 3 (LAG3) ARE UPREGULATED ON ACTIVATED AND EXHAUSTED T CELLS (TEX). CD8+ TEX DEVELOP FROM CHRONIC ANTIGENIC STIMULATION AND ARE DEFINED BY SUSTAINED MULTI-IR EXPRESSION, IMPAIRED EFFECTOR FUNCTIONS, POOR PROLIFERATIVE POTENTIAL, TRANSCRIPTIONAL REPROGRAMMING, EPIGENETIC SCARRING, AND METABOLIC DYSFUNCTION. IMMUNE CHECKPOINT BLOCKADE (ICB) IMMUNOTHERAPIES TARGET IRS SUCH AS PD1 AIMING TO REINVIGORATE CD8+ TEX FUNCTION FOR IMPROVED TUMOR CLEARANCE; HOWEVER, MANY PATIENTS FAIL TO RESPOND. OUR LABORATORY WAS THE FIRST TO DEMONSTRATE THAT PD1 AND LAG3 DUAL BLOCKADE WAS SUPERIOR TO PD1 ALONE IN MURINE TUMOR MODELS. PD1 AND LAG3 ARE NOW MAJOR THERAPEUTIC TARGETS. HOWEVER, LITTLE IS KNOWN REGARDING MECHANISTIC IMPACT OF ANTI-PD1/ANTI-LAG3 COMBINATORIAL SYNERGY. WE RECENTLY REPORTED THAT PD1/LAG3 SYNERGIZE TO DRIVE CD8+ TEX IN MURINE MELANOMA, AND WE REPORTED SIMILAR RESULTS CLINICALLY. HOWEVER, THE COMBINED ACTIVITY OF PD1/LAG3 OBSERVED DURING GLOBAL DELETION AND MONOCLONAL ANTIBODY-BASED APPROACHES IS NOT AS ROBUST FOLLOWING CD8+ T CELL-SPECIFIC DELETION, SUGGESTING PD1/LAG3 EFFECTS OTHER T CELL TYPES, SUCH AS CD4+ T CELLS. CD4+ T CELLS PLAY CRUCIAL ROLES IN CANCER IMMUNOTHERAPY BY PROVIDING HELP TO CD8+ TIL AND EXERTING DIRECT ANTI-TUMOR CYTOTOXIC FUNCTIONS. ON THE OTHER HAND, RECENT EVIDENCE SUGGESTS THAT CD4+ T CELLS CAN DISPLAY AN EXHAUSTION-LIKE PROFILE, INCLUDING EXPRESSION OF PD1 AND LAG3, THAT CORRELATES WITH WORSE OUTCOMES. ALTHOUGH THERE IS GROWING EVIDENCE FOR CD4+ TEX IN CANCER, LITTLE HAS BEEN DONE TO MECHANISTICALLY DISSECT THEIR PHENOTYPE, FUNCTION, MOLECULAR PROFILE, OR REGULATORY MECHANISMS TO BETTER UNDERSTAND THEIR SIGNIFICANCE. WHILE THE ROLE OF PD1/LAG3 IN CD8+ TEX IS WELL ESTABLISHED, IT REMAINS UNKNOWN WHETHER THESE IRS DRIVE A SIMILAR STATE IN CD4+ T CELLS WITHIN THE TUMOR MICROENVIRONMENT AND HOW THIS MIGHT IMPACT ANTI-TUMOR RESPONSES. MY CENTRAL HYPOTHESIS IS THAT PD1 AND LAG3 EXERT DIFFERENTIAL YET SYNERGISTIC EFFECTS ON CD4+ T CELLS TO DRIVE THEIR EXHAUSTION AND IMPAIRED ANTI-TUMOR RESPONSES. MY OVERALL GOAL IS TO MECHANISTICALLY DISSECT THE CELL-INTRINSIC EFFECTS OF CD4+ TCONV-SPECIFIC PD1/LAG3 LOSS AND THE CELL- EXTRINSIC IMPACT ON CD8+ T CELLS TO BETTER UNDERSTAND CD4+ TEX AND THEIR IMPACT ON ANTI-TUMOR IMMUNITY. I WILL PERFORM ADOPTIVE TRANSFERS OF MELANOMA TUMOR ANTIGEN-SPECIFIC CD4+ T CELLS THAT LACK PD1 AND/OR LAG3, AND ASSESS PHENOTYPIC, FUNCTIONAL, TRANSCRIPTIONAL, AND EPIGENETIC FEATURES OF CD4+ TUMOR-INFILTRATING LYMPHOCYTES (TIL) TO DETERMINE THE CELL-INTRINSIC EFFECTS FROM PD1/LAG3 LOSS. I WILL COMPARE OUR FINDINGS WITH OUR PUBLISHED DATA ON PD1/LAG3-DEFICIENT CD8+ T CELLS (AIM I). THEN, I WILL ASSESS THE IMPACT OF CD4+ T CELL-SPECIFIC PD1/LAG3 LOSS ON CD8+ TEX BY PERFORMING PHENOTYPIC, FUNCTIONAL, AND TRANSCRIPTOMIC ANALYSES OF CD8+ TIL FOLLOWING A.T. OF PD1/LAG3-DEFICIENT CD4+ TIL (AIM II). ELUCIDATING THE CELL-INTRINSIC AND CELL-EXTRINSIC CONTRIBUTIONS OF PD1 AND LAG3 ON CD4+ T CELLS WILL IMPROVE OUR MECHANISTIC UNDERSTANDING OF CD4+ TEX AND THEIR SIGNIFICANCE IN ANTI-TUMOR IMMUNITY, WHICH IS CRUCIAL FOR THE ADVANCEMENT OF IMMUNOTHERAPIES.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $75.5k | 6/13/25 |