This $396,061 Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) supports research to assess the efficacy of a novel class of hypoxia-inducible factor (HIF) inhibitors as a potential treatment for renal cell carcinoma (RCC). The principal investigator has developed boron-based HIF inhibitors derived from the natural compound honokiol, which have demonstrated promising anti-angiogenic properties in vitro. This 2-year project aims to (1) determine...
The U.S. Defense Health Agency awarded Kuda Therapeutics, Inc., a woman-owned small business located in Salt Lake City, Utah, a $5,599,141 Project Grant under the Military Medical Research and Development program (CFDA 12.420) to advance a novel, orally available ferroptosis inducer for the treatment of von Hippel-Lindau (VHL) disease. The 3-year grant, with a period of performance from June 1, 2025 to May 31, 2028, supports Kuda Therapeutics' research to develop innovative therapeutic...
This $267,298 Project Grant awarded by the National Cancer Institute (CFDA 93.395 Cancer Treatment Research) to Dana-Farber Cancer Institute, Inc. (Dfci) supports research to target the CDK4/6 pathway in translocation renal cell carcinoma (TRCC), an aggressive form of kidney cancer. The project aims to test the hypothesis that inhibiting the CDK4/6 pathway, either alone or in combination with targeting the PI3K/mTOR pathway, may be an effective therapeutic strategy for TRCC. Through in vitro and...
This Project Grant award, funded by the National Cancer Institute (CFDA 93.394 Cancer Detection and Diagnosis Research), provides $2,984,495.00 to the University of California, San Diego to develop and validate a comprehensive liquid biopsy platform to identify predictive biomarkers for response and resistance to immunotherapy and radiotherapy in patients with advanced renal cell carcinoma. The key objectives are to: 1) clinically validate early on-treatment circulating tumor cell (CTC) dynamics...
The National Cancer Institute (NCI) awarded a $371,905 Project Grant under the Cancer Treatment Research program (CFDA 93.395) to the University of Florida to support research on the role of Angiopoietin-like 4 (ANGPTL4) in clear cell renal cell carcinoma (CCRCC). The project aims to define ANGPTL4's functions in the CCRCC tumor microenvironment, evaluate the efficacy of combining anti-ANGPTL4 antibodies with immune checkpoint inhibitors in mouse models, and determine ANGPTL4's cancer...
This Project Grant award of $215,985.00 was provided by the National Cancer Institute (CFDA 93.394 - Cancer Detection and Diagnosis Research) to The Leland Stanford Junior University. The objective is to study exosome signatures as potential early biomarkers for predicting response to immune checkpoint inhibitor therapy in patients with metastatic renal cell carcinoma. The study will sequence exosomal RNA from blood and urine samples of 50 patients at three timepoints - baseline and 3 and 6...
This $521,579 Project Grant award, provided by the National Cancer Institute (NCI) under the Cancer Biology Research program (CFDA 93.396), supports research to identify critical regulators controlling clear cell renal cell carcinoma (CCRCC) lung metastasis. The University of Texas Southwestern Medical Center, the awardee, will conduct a genome-wide CRISPR screen to characterize the role of the hepatic leukemia factor (HLF) in CCRCC lung metastasis and examine the underlying molecular...
This STTR Phase I Project Grant award, totaling $305,000.00 and funded by the National Science Foundation (NSF) under the Technology, Innovation, and Partnerships (CFDA 47.084) program, aims to develop a novel, non-invasive urine-based screening test for early detection of kidney cancer. The key objectives are to: 1) demonstrate the specificity and accuracy of the biomarker for detecting renal tumors in early-stage kidney cancer patients without symptoms, and 2) demonstrate the effectiveness and...
This federal Project Grant award of $400,000 from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) supports the advancement of next-generation CAR-T cell therapies for renal cell carcinoma (RCC). The award recipient, Cellinfinity Bio Inc., is developing novel CAR-T cell modifications, including a PRDM1 exon 3 knockout and a CTLA-4 cytoplasmic tail fusion, to enhance CAR-T cell efficacy against RCC tumors. The project aims to evaluate the combination of these...
The National Cancer Institute (NCI) awarded a $483,395 Project Grant under the Cancer Treatment Research program (CFDA 93.395) to The Institute For Cancer Research (ICR), a non-profit research organization located in Pennsylvania. The grant supports research aimed at examining the therapeutic potential of targeting the P300 and CBP enzymes as novel treatment approaches for clear cell renal cell carcinoma (cCRCC), the most common subtype of kidney cancer. The project will investigate how...
DEVELOPMENT OF A NOVEL DUAL HIF-? INHIBITOR AND INDUCER OF FERROPTOSIS FOR KIDNEY CANCER - ABSTRACT KIDNEY CANCER IS THE 8TH MOST COMMON CANCER IN THE US POPULATION, OF WHICH CLEAR CELL RENAL CELL CARCINOMA (CCRCC) IS THE MOST COMMON SUBTYPE. CCRCC IS HIGHLY REFRACTORY TO STANDARD CHEMOTHERAPY AND RADIATION, AND PATIENTS WITH ADVANCED OR METASTATIC TUMORS HAVE A 5-YEAR SURVIVAL RATE OF JUST 14%. CCRCC IS TYPICALLY INITIATED BY INACTIVATION OF THE VON HIPPEL LINDAU (VHL) TUMOR SUPPRESSOR, WHICH RESULTS IN THE CONSTITUTIVE ACTIVATION OF THE HYPOXIA INDUCIBLE FACTORS, HIF-1A AND HIF-2A. THE HIFS ARE PROMISING THERAPEUTIC TARGETS FOR CCRCC DUE TO THEIR KNOWN INVOLVEMENT IN THE PATHOGENESIS OF THE DISEASE, AND THEIR LACK OF EXPRESSION IN NORMAL WELL-PERFUSED TISSUE. ADDITIONALLY, THE INTRACELLULAR ACCUMULATION OF LIPIDS, WHICH IS A DEFINING CHARACTERISTIC OF CCRCC, RENDERS THEM UNIQUELY SUSCEPTIBLE TO CELL DEATH ASSOCIATED WITH IRON-DEPENDENT LIPID PEROXIDATION OR FERROPTOSIS. THROUGH EFFORTS TO OPTIMIZE SELECTIVE HIF-2A INHIBITORS IN THE PREDICATE SBIR PHASE I PROJECT, KUDA THERAPEUTICS HAS IDENTIFIED A SERIES OF NOVEL COMPOUNDS, INCLUDING LEAD KD061, THAT DECREASE BOTH HIF-1A AND HIF-2A, AND INDUCE FERROPTOSIS IN VITRO AND IN VIVO, BY BINDING TO THE NOVEL MOLECULAR TARGET, IRON SULFUR CLUSTER ASSEMBLY 2 (ISCA2). ISCA2 INHIBITION TRIGGERS THE IRON STARVATION RESPONSE, WHICH INHIBITS IRON-RESPONSIVE ELEMENT (IRE)-DEPENDENT TRANSLATION OF HIF-2A, AND TRIGGERS IRON OVERLOAD, WHICH RESULTS IN FERROPTOTIC DEATH. STRIKINGLY, PVHL-DEFICIENT CCRCC CELLS HAVE DECREASED ISCA2 LEVELS AND ARE MORE SENSITIVE TO ISCA2 INHIBITION COMPARED TO CELLS WITH PVHL RECONSTITUTION, SUGGESTING A THERAPEUTIC WINDOW FOR THE SELECTIVE TARGETING OF PVHL-DEFICIENT CCRCC CELLS WITH MINIMAL TOXICITY TO NORMAL, PVHL-PROFICIENT TISSUE. IN MICE, KD061 TREATMENT MEDIATES SIGNIFICANT >60% INHIBITION OF RENCA SYNGENEIC XENOGRAFT TUMOR GROWTH THROUGH ORAL ADMINISTRATION WITH NO DETECTABLE TOXICITIES AT THE THERAPEUTIC DOSE, VALIDATING THIS NOVEL APPROACH FOR THE TREATMENT OF CCRCC. THE OBJECTIVE OF THIS SBIR PHASE II PROJECT IS TO FURTHER CHARACTERIZE THE EFFICACY AND SAFETY OF KUDA'S DUAL HIF-A INHIBITOR AND FERROPTOSIS INDUCER LEAD KD061. THIS WORK WILL ADVANCE ITS DEVELOPMENT TOWARDS INVESTIGATIONAL NEW DRUG (IND) FILING AND FIRST-IN-HUMAN STUDIES FOR THE INITIAL TREATMENT OF PATIENTS WITH CCRCC. OUR FIRST AIM IS TO OPTIMIZE KD061 DRUG SUBSTANCE, FORMULATION AND SYNTHESIS. HERE WE WILL PERFORM SALT SCREENING, POLYMORPH SCREENING AND FORMULATION STUDIES TO IDENTIFY THE OPTIMAL FORM OF KD061 FOR ORAL DELIVERY IN VIVO, THEN SCALE-UP SYNTHESIS FOR EFFICACY AND TOXICOLOGY STUDIES. OUR SECOND AIM IS TO CHARACTERIZE THE IN VIVO ANTI-TUMOR EFFICACY OF KD061 AS A SINGLE AGENT IN MULTIPLE MOUSE MODELS OF CCRCC, AND IN COMBINATION WITH SUNITINIB OR PD-1 IMMUNE CHECKPOINT INHIBITION IN THE RENCA SYNGENEIC KIDNEY CANCER MODEL. OUR THIRD AIM IS TO DETERMINE IN VIVO TOXICOLOGY OF KD061 IN A RODENT AND NON-RODENT SPECIES BY PERFORMING INDUSTRY STANDARD NON-GLP AND GLP STUDIES TO IDENTIFY THE STARTING DOSES AND SOURCES OF DOSE LIMITING TOXICITIES FOR HUMAN CLINICAL TRIALS. AT PHASE II COMPLETION, WE WILL HAVE PRODUCED THE OPTIMAL KD061 DRUG SUBSTANCE, AND CHARACTERIZED ITS EFFICACY AND SAFETY, SIGNIFICANTLY ADVANCING KD061 TOWARDS IND FILING AND FIRST-IN-HUMAN TRIALS WHERE IT CAN BEGIN TO MAKE A DIFFERENCE IN THE LIVES OF PATIENTS WITH CCRCC.