Project Grant R01EB034360

Award Date 7/1/24
Completion Date 4/30/28
Dollars Obligated $1.8M
Federal Grant Program
93.286
Assistance Type
Project Grant
Place of Performance
Richardson, TX 75080, USA
Similar Awards
This federal Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $677,176 to The Research Foundation For The State University Of New York (RF SUNY) to advance the development of interstitial chemophototherapy (I-CPT) as a novel treatment approach for locally advanced pancreatic cancer (PACA). The key products and services to be delivered under this 4-year award include: Defining optimal I-CPT light dosimetry for treating large PACA tumors...
This $1,377,000 Project Grant award from the National Institutes of Health's Trans-NIH Research Support program (CFDA 93.310) aims to develop a novel oncolytic virus platform called VMG for the treatment of pancreatic ductal adenocarcinoma (PDAC). The key products and services to be delivered under this 3-year project include: Evaluating the VMG oncolytic virus vector's ability to selectively target and destroy PDAC tumor cells while sparing normal tissues, through expression of enzymes to break...
This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $268,345 to the Sanford Burnham Prebys Medical Discovery Institute to develop a novel immunotherapy for pancreatic cancer. The goal is to investigate the therapeutic potential of blocking the PSGL-1/VISTA axis, which regulates T cell function, to enhance the immune response against pancreatic tumors. The research will explore the impact of PSGL-1 blockade alone and in combination with...
This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides funding of $399,970 to Duo Oncology Inc. to develop DUO-207, an ultrasmall nanoparticle formulation designed to improve the delivery and efficacy of combination chemotherapy for advanced pancreatic cancer. The key product being developed under this award is DUO-207, which combines a polymer-conjugated gemcitabine and paclitaxel in a single 14nm nanoparticle. This novel formulation...
This Project Grant award from the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395) aims to advance a local controlled release platform for intratumoral delivery of hyaluronidase to improve the efficacy of systemically administered drugs for pancreatic ductal adenocarcinomas (PDAC). The award totals $599,474 and will fund a 5-year project from Sep 1, 2024 to Aug 31, 2029. The key products and services to be delivered through this grant include: 1) using...
This federal Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $778,873 to Cold Spring Harbor Laboratory (CSHL) to investigate the role of the SOAT1 enzyme as a therapeutic target for pancreatic ductal adenocarcinoma (PDAC). The key objectives are to: 1) Use genetically engineered mouse models to test the effects of SOAT1 deletion on PDAC development and metastasis, and characterize the metabolic impacts; 2) Develop first-in-class small...
This federal Project Grant award from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) provides $654,197 to The General Hospital Corporation (doing business as Massachusetts General Hospital) to conduct research on pancreatic cancer patient-derived xenograft (PDX) tumor models. The research aims to: Define the molecular subtypes of pancreatic ductal adenocarcinoma (PDAC) that respond to standard-of-care chemotherapies like FOLFIRINOX and gemcitabine + Abraxane. Elucidate how...
This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $400,835 to Cambium Oncology LLC to develop a novel CAR-T immunotherapeutic for the treatment of pancreatic cancer. The key products to be delivered include: Engineering CAR-T cells that target the MUC16 antigen and secrete a VIP receptor antagonist (ANT308-FC) to disrupt the immunosuppressive tumor microenvironment in pancreatic ductal adenocarcinoma (PDAC). This aims to enhance the...
This Project Grant award from the National Cancer Institute (NCI), under the Cancer Detection and Diagnosis Research program (CFDA 93.394), provides $490,381 to The Pennsylvania State University to develop phase-changing peptide nanoemulsion (NPEP) contrast agents for deep tissue ultrasound imaging of adoptive cellular immunotherapies. The goal is to create NPEP agents that can be rapidly internalized and persist within macrophages, enabling real-time and long-term monitoring of macrophage...
This Project Grant award from the National Cancer Institute (CFDA 93.394 - Cancer Detection and Diagnosis Research) provides $676,006 to The Regents of the University of California, San Francisco (UCSF) to conduct research aimed at early identification of resistance to immunotherapy for cancer treatment. The key products and services to be delivered under this 5-year award include: Developing and testing non-invasive imaging strategies, such as PET scans and implantable fluorescence sensors,...

MOLECULAR IMAGING GUIDANCE FOR POTENTIATING CHEMOIMMUNOTHERAPY IN PANCREATIC CANCER USING PHOTODYNAMIC PRIMING - ABSTRACT PANCREATIC DUCTAL ADENOCARCINOMA (PDA) IS THE 3RD MOST DEADLY CANCERS WITH A 5-YEAR SURVIVAL RATE OF ONLY 3% IN PATIENTS WITH METASTASES. CURRENT EFFORTS TO IMPROVE OUTCOMES IN PDA HAVE YET TO SIGNIFICANTLY EXTEND PATIENT SURVIVAL. THIS IS IN PART DUE TO THE FACT THAT 80-90% OF PDA CASES ARE NOT SURGICALLY RESECTABLE AND EXHIBIT LOCAL OR DISTANT METASTASES UPON DIAGNOSIS, THEREBY SIGNIFICANTLY SHORTENING SURVIVAL. THE MOST AGGRESSIVE AND TOXIC CHEMOTHERAPY COCKTAIL REGIMEN, FOLFIRINOX, FAILS TO EXTEND MEDIAN SURVIVAL BEYOND 11.1 MONTHS. WHILE COMBINATIONS OF CHEMOTHERAPY WITH IMMUNOTHERAPY (CHEMO-IMMUNOTHERAPY) HAVE BEEN PARADIGM-SHIFTING FOR SEVERAL PRIMARY AND METASTATIC CANCERS, THEY STILL FAIL TO SIGNIFICANTLY EXTEND PDA PATIENT SURVIVAL. FOR EXAMPLE, CHEMO-IMMUNOTHERAPY USING GEMCITABINE, NAB-PACLITAXEL AND PEMBROLIZUMAB EXTENDED OVERALL SURVIVAL IN PDA PATIENTS TO ONLY 15 MONTHS. AS SUCH, THERE REMAINS A CRITICAL NEED FOR TRANSFORMATIVE MODALITIES THAT IMPROVE RESPONSE RATES TO CHEMO-IMMUNOTHERAPY IN PDA PATIENTS. CHEMO-IMMUNOTHERAPY IS LARGELY LIMITED IN PDA BY DESMOPLASIA WHICH CONTRIBUTES TO 1) POOR DRUG DELIVERY, AND 2) AN IMMUNOSUPPRESSIVE TUMOR MICROENVIRONMENT THAT NEUTRALIZES THE ACTION OF IMMUNOTHERAPIES. THIS PROJECT CAPITALIZES ON A NON-TOXIC LIGHT- ACTIVATED MODALITY KNOWN AS PHOTODYNAMIC PRIMING (PDP), WHICH WE HAVE SHOWN TO DIRECTLY REMEDIATE DESMOPLASIA. IN DOING SO, PDP AUGMENTS THE DELIVERY OF SMALL MOLECULAR WEIGHT THERAPEUTICS, MONOCLONAL ANTIBODIES, AND NANOMEDICINES, AND ALSO MECHANISTICALLY SENSITIZE TUMORS TO BOTH CHEMOTHERAPY AND IMMUNOTHERAPY. FURTHERMORE, WE AND OTHERS HAVE SHOWN THAT PDP INDUCES T CELL MEDIATED ANTI-TUMOR RESPONSES, THEREBY SYNERGIZING WITH IMMUNE-CHECKPOINT BLOCKADE. IN THIS PROPOSAL, WE WILL USE OPTICAL MOLECULAR IMAGING TO DIRECT THE ENGINEERING OF A SINGLE PD-L1 TARGETED LIPOSOME THAT DELIVERS PDP AND CHEMO-IMMUNOTHERAPY IN A SPATIOTEMPORAL, SYNCHRONIZED FASHION. WE WILL USE SYNGENEIC MODELS REPRESENTING T CELL INFLAMED AND NON-T CELL INFLAMED PDA TUMORS, GENETICALLY ENGINEERED MOUSE MODELS, AND ORTHOTOPIC PATIENT-DERIVED PDA XENOGRAFT MODELS IN ORDER TO: 1) PROMOTE A HOMOGENOUS TUMOR DEPOSITION OF CHEMOTHERAPY AND IMMUNOTHERAPY AGENTS, 2) MECHANISTICALLY SENSITIZE TUMORS TO CHEMOTHERAPY, 3) INDUCE IMMUNOGENIC CELL DEATH, AND 4) PROVOKE A T CELL MEDIATED ANTI-TUMOR ATTACK. BY FIRST REMEDIATING DESMOPLASIA, WE PROPOSE THAT A SINGLE TARGETED LIPOSOME INTEGRATING PDP AND CHEMO-IMMUNOTHERAPY WILL IMPROVE PDA RESPONSIVENESS AT CONSIDERABLY LOWER CHEMOTHERAPY DOSES, THEREBY PROLONGING PATIENT SURVIVAL, WHILE MITIGATING DOSE-LIMITING TOXICITIES AND IMPROVING PATIENT QUALITY OF LIFE.

Posted 6/20/24