Project Grant R01CA291956
- This $414,781 Project Grant awarded by the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) will support research to investigate the effects of pelvic radiotherapy on the urinary microbiome and its potential as a biomarker for radiation cystitis in prostate cancer patients. The primary awardee, the University of Rochester, will use banked urine samples from a clinical study, as well as a preclinical mouse model, to test hypotheses that: 1) radiotherapy alters the microbial...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $219,024.00 to The University of Texas Health Science Center at Tyler to test the ability of the CSP7 peptide to inhibit radiation-induced lung injury (RILI) and resolve radiation-induced pulmonary fibrosis (RIPF) in mouse models. The award aims to develop a novel peptide intervention for cancer patients undergoing thoracic radiation therapy, which can lead to acute and chronic lung...
- This Cooperative Agreement award from the National Institutes of Health (NIH) under the Trans-NIH Research Support program (CFDA 93.310) provides $546,000.00 to The Medical College of Wisconsin, Inc. (MCW) to develop medical countermeasures (MCMs) against the delayed effects of acute radiation exposure (DEARE). The project aims to screen three candidate MCMs targeting the alternative renin angiotensin system (RAS) pathway, which has been shown to have tissue-protective functions, in order to...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $730,398 to the Sloan-Kettering Institute for Cancer Research to conduct research on leveraging radiation-induced senescence and PTPN2 inhibition to enhance immune-mediated tumor control in rectal cancer. The research aims to develop non-surgical treatment strategies that prioritize organ preservation and minimize lifelong morbidities for rectal cancer patients. Key aspects of the...
- This $2,108,734 Project Grant was awarded on September 1, 2025 by the National Cancer Institute (CFDA 93.393 - Cancer Cause and Prevention Research) to The University of Texas M.D. Anderson Cancer Center to conduct a 5-year research program focused on bladder cancer. The key objectives of this research program are: 1) Developing molecular profiles of bladder cancer evolution from field effects to aggressive disease, and investigating the role of LPAR6 and CAB39L in dysregulating urothelial...
- The University of North Carolina at Chapel Hill (UNC-CH) received a $514,582 Project Grant award from the National Cancer Institute (NCI) under the Cancer Cause and Prevention Research program (CFDA 93.393) to conduct research on "Targeting APOBEC3-Induced Squamous Differentiation in Bladder Cancer". The award began on March 1, 2025 and is set to conclude on February 28, 2030. The research aims to investigate the role of APOBEC3 enzymes in bladder cancer initiation and progression,...
- This Project Grant award of $508,988.00 from the National Institute of Allergy and Infectious Diseases (NIAID), under the Allergy and Infectious Diseases Research CFDA program (93.855), aims to evaluate whether ORP100S, a pre-reduced, monothiol variant of human thioredoxin-1 (TRX), can modulate key inflammatory markers of radiation-induced pneumonitis and fibrosis in an in vivo mouse tumor-implantation model. The goal is to develop ORP100S as a novel treatment to mitigate radiation-induced...
- The National Cancer Institute awarded a $571,271 Project Grant under the Cancer Treatment Research program (CFDA 93.395) to the University of Texas Health Science Center at Houston. The goal of this 5-year research project is to develop a targeted therapy for the treatment of metastatic castration-resistant prostate cancer, an aggressive form of the disease with limited treatment options. The project will explore using a small molecule drug conjugate that targets the prostate-specific membrane...
- 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 from the National Cancer Institute (CFDA 93.395 Cancer Treatment Research) provides funding to the Beckman Research Institute of the City of Hope to conduct research on tumor-selective radiosensitization by targeting hypoxia in rectal cancer. The $662,096 award, active from February 1, 2025 to January 31, 2030, aims to characterize the biology driving the response of locally advanced rectal cancer to standard-of-care treatment and determine if an FDA-approved...
TARGETING ANGIOTENSIN AND INFLAMMATION TO PREVENT RADIOTHERAPY-INDUCED BLADDER TOXICITY. - ABSTRACT/SUMMARY RADIOTHERAPY (RT) IS AN EFFECTIVE TREATMENT MODALITY FOR PELVIC MALIGNANCIES. HOWEVER, RADIATION CYSTITIS (RC) IS A WIDELY RECOGNIZED IRREVERSIBLE AND CHRONIC CONDITION REPORTED IN 8-11% OF CANCER PATIENTS TREATED WITH PELVIC RT. THE SYMPTOMS OF RC CAN INCLUDE HEMATURIA, INCREASED URINARY FREQUENCY AND URGENCY, INCONTINENCE, AND DYSURIA. FEW EFFECTIVE TREATMENTS EXIST TO ALLEVIATE THESE ADVERSE SYMPTOMS, AND THERE ARE NO FDA APPROVED PREVENTATIVE AGENTS. HYPERBARIC OXYGEN THERAPY DOES ALLEVIATE SOME SYMPTOMS, BUT ITS USE IS RESTRICTED BY INACCESSIBILITY, COST, AND CONTRAINDICATIONS, LEADING TO POOR PATIENT COMPLIANCE. THE ILL-DEFINED PATHOPHYSIOLOGY AND MECHANISMS OF RC THWART THE DEVELOPMENT OF NEW THERAPIES. OUR GWAS IN SIX LARGE PROSTATE CANCER (PCA) RT COHORTS IDENTIFIED SNPS, TAGGING AGT, CORRELATED WITH PATIENT-REPORTED HEMATURIA, A DEFINING SYMPTOM OF RC. AGT ENCODES ANGIOTENSINOGEN, PART OF THE RENIN-ANGIOTENSIN SYSTEM (RAS). OUR SUBSEQUENT MULTI-SITE CLINICAL STUDY SUPPORTS THE HYPOTHESIS THAT ANGIOTENSIN-CONVERTING ENZYME INHIBITORS (ACEI) ARE RADIOPROTECTIVE IN THE BLADDER; RC WAS SEEN IN 16.5% OF PATIENTS NOT TAKING AN ACEI VS ONLY 4.8% OF THOSE TAKING AN ACEI DURING RT (P=0.01). IN THE SAME CLINICAL COHORT, RELEASE OF EXTRACELLULAR VESICLES INTO THE URINE (UEVS) AND INCREASED CIRCULATING LEVELS OF THE PRO-INFLAMMATORY CHEMOKINE CCL2 WERE SIGNIFICANTLY ASSOCIATED WITH SYMPTOMS OF RC. IN OUR MURINE MODEL, ACEI PROTECTED AGAINST MICTURITION CHANGES, IMMUNE CELL RECRUITMENT, AND UROTHELIAL INJURY AFTER RT. BASED ON THESE DATA, WE HYPOTHESIZE THAT RAS MODULATION AND PREVENTING CCL2-DEPENDENT IMMUNE CELL RECRUITMENT WILL PREVENT BLADDER INJURY AFTER RT. OUR OBJECTIVES ARE TO CHARACTERIZE AND INVESTIGATE THE MECHANISTIC ROLE OF RAS AND ITS PHARMACOLOGIC MODULATION IN TISSUE INFLAMMATION AND INJURY IN THE BLADDER AFTER RT AND DEVELOP A URINE-BASED BIOMARKER OF CLINICAL RC. OUR FOUR SPECIFIC AIMS USE A COMBINED PRECLINICAL AND TRANSLATIONAL APPROACH: AIM 1: TO CHARACTERIZE MECHANISMS OF BLADDER INFLAMMATION AND IMMUNE CELL RECRUITMENT IN THE DEVELOPMENT OF BLADDER INJURY AFTER SINGLE DOSE AND FRACTIONATED RT, AS A FUNCTION OF DOSE AND IRRADIATED VOLUME; AIM 2: TO DETERMINE OPTIMAL DURATION OF ACEI OR ANGIOTENSIN RECEPTOR BLOCKERS (ARBS) TO ELICIT MAXIMAL RADIOPROTECTION, AND THE MECHANISM OF PREVENTION OF PROGRESSIVE BLADDER INJURY, AND DETERMINE THE THERAPEUTIC RATIO USING AN ORTHOTOPIC PCA MODEL; AIM 3: TO ASSESS BLADDER UEV RELEASE KINETICS BY NANOPARTICLE TRACKING ANALYSES AS A PREDICTIVE BIOMARKER OF RT INJURY, AND CHARACTERIZE EV CARGO PROTEINS AND FUNCTIONAL ABILITY TO INDUCE CELLULAR STRESS/DAMAGE RESPONSE IN OUR MOUSE MODELS; AND AIM 4: TO VALIDATE UEV KINETICS AS A BIOMARKER OF LATE RC, AND PREDICTOR OF RAS MODULATOR RESPONSE, USING BIOSAMPLES IN TWO CLINICAL STUDIES OF MEN RECEIVING RT FOR PCA. AN EV BIOMARKER COULD BE USED TO IDENTIFY PATIENTS NEEDING EARLY MITIGATING INTERVENTIONS, SUCH AS AN ACEI, TO AVOID PROGRESSION TO SEVERE RC.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $550.5k | 7/1/25 | ||
| Not listed | $550.2k | 7/31/24 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
SUB00001023S | The Medical College Of Wisconsin, Inc. | Project Grant R01CA291956 | $121.1k | 1/3/25 | |
SUB00000324S | University Of California, LOS Angeles | Project Grant R01CA291956 | $237.6k | 11/27/24 |