Project Grant R01CA289456
- This Project Grant award from the National Cancer Institute (CFDA 93.393 - Cancer Cause and Prevention Research) provides $426,425 to Baylor College of Medicine to conduct a pilot study examining the relationship between gut microbiome composition, metabolic dysfunction-associated steatotic liver disease (MASLD), and hepatocellular carcinoma (HCC). The key objectives of this 2-year study are to: 1) characterize baseline gut microbiome diversity associated with MASLD with and without HCC, 2)...
- This Cooperative Agreement award from the National Cancer Institute, a division of the Department of Health and Human Services, provides $380,509 under the Cancer Biology Research program to The Trustees of Columbia University in New York. The award supports research to elucidate the molecular drivers of melanoma liver metastasis and associated resistance to immunotherapies. Specifically, the researchers will characterize a novel preclinical mouse model that recapitulates genomic and...
- Federal Grant Award Summary Emory University received a $1.42M Project Grant award from the National Cancer Institute (NCI) under the Cancer Treatment Research program (CFDA 93.395) effective April 1, 2025, through March 31, 2030. This R01 research grant supports a translational research initiative investigating neoadjuvant combination immunotherapy for melanoma treatment. The research team, led by Dr. Paulos (T cell immunologist) and Dr. Lesinski (translational scientist), will conduct...
- This federal Project Grant award from the Department of Defense's Military Medical Research and Development program (CFDA 12.420) provides $959,882.00 to The Regents of the University of California, San Francisco (UCSF) to establish and overcome the mechanisms of liver metastasis-induced systemic tumor immune tolerance and immunotherapy resistance in melanoma. The 3-year research project aims to investigate fundamental biological processes and develop new therapeutic approaches to enhance the...
- Summary Columbia University's Health Sciences Division received a $727,904 Cooperative Agreement award from the National Cancer Institute under the Cancer Biology Research program (CFDA 93.396) on August 11, 2025, for research on engineered probiotic bacteria to prevent and intercept colorectal cancer (CRC). The award supports a two-phase UG3/UH3 project designed to develop and characterize engineered strains of Escherichia coli Nissle 1917 (ECN) that selectively colonize precancerous lesions...
- This Project Grant award from the National Cancer Institute (CFDA 93.395 Cancer Treatment Research) aims to investigate the role of bacteria-derived small molecules in improving the efficacy of immune checkpoint inhibitor (ICI) cancer immunotherapy. The $540,288 award to the University of Florida supports research to identify specific bacteria from ICI-responsive patients that produce small molecules capable of enhancing anti-tumor immune responses and boosting the effects of ICI treatment....
- The Department of Defense's Military Medical Research and Development program (CFDA 12.420) has awarded a $302,228 project grant to The Regents of the University of California, San Francisco to support research on "Establishing and Overcoming the Mechanisms of Liver Metastasis-Induced Systemic Tumor Immune Tolerance and Immunotherapy Resistance in Melanoma." The 3-year grant project, running from September 30, 2023 to September 29, 2026, will investigate the biological mechanisms by...
- This $999,960 Project Grant award from the National Cancer Institute's (CFDA 93.395) Cancer Treatment Research program supports the development of LNS8801, a small molecule therapeutic for cutaneous melanoma patients who cannot tolerate immunotherapy. The funding will enable Linnaeus Therapeutics Inc. to advance LNS8801 through human clinical trials, building on preclinical work that has demonstrated LNS8801's antitumor efficacy and safety profile. LNS8801 is an orally deliverable, small...
- Federal Project Grant Award Summary The National Cancer Institute (NCI) awarded the Regents of the University of Michigan a $660,808 Project Grant under the Cancer Biology Research program (CFDA 93.396) to investigate the durability and functional role of tissue-resident memory T cells (TRM) in melanoma immunotherapy response and long-term survival. The award, obligated on April 7, 2026, with a completion date of March 31, 2031, supports research examining how TRM cells—specifically a subset...
- Federal Grant Award Summary The National Cancer Institute awarded The Johns Hopkins University a $510,431 Project Grant under the Cancer Biology Research program (CFDA 93.396) effective July 1, 2025 through June 30, 2030. This award supports fundamental research investigating the mechanisms of metastatic recurrence and therapeutic resistance in melanoma, with particular emphasis on understanding how aging influences tumor dormancy and the microenvironment. The research examines Wnt signaling...
TARGETING THE GUT MICROBIOME TO INHIBIT MELANOMA LYMPH NODE METASTASES - PROJECT SUMMARY MELANOMA IS A DEVASTATING SKIN CANCER THAT KILLS NEARLY 8,000 PATIENTS IN THE US ANNUALLY. PATIENTS WITH THICKER MELANOMAS, INVADING DEEPER AND CLOSER TO LYMPHATICS AND BLOOD VESSELS, ARE MORE LIKELY TO HAVE METASTASIS TO REGIONAL LYMPH NODES (LNS). FOR PATIENTS WITHOUT CLINICALLY EVIDENT LN METASTASES, THE PRESENCE OF OCCULT METASTASES IN THE SENTINEL LN (SLN) OR FIRST TUMOR-DRAINING LN (TDLN) IS THE MOST IMPORTANT PROGNOSTIC FACTOR. HOWEVER, WHY MELANOMA METASTASIZES TO LNS IN SOME PATIENTS AND NOT IN OTHERS REMAIN POORLY UNDERSTOOD; THEREFORE, IT IS CRITICAL TO DETERMINE THE FACTORS REGULATING METASTASIS TO INFORM THE DEVELOPMENT OF NOVEL THERAPEUTIC APPROACHES TO PREVENT AND TARGET METASTASIS. WE DEMONSTRATED THAT NOT ONLY IS THE GUT MICROBIOME A CRITICAL MODULATOR OF RESPONSE TO IMMUNE CHECKPOINT BLOCKADE (ICB) BUT ALSO THAT A FAVORABLE GUT MICROBIOME CAN AUGMENT ANTI-TUMOR IMMUNITY AT DISTANT SITES, INCLUDING THE SKIN. WE HAVE ALSO IDENTIFIED DIFFERENCES IN THE GUT MICROBIOME OF MELANOMA PATIENTS WITH EARLY-STAGE (0-II) COMPARED TO LATE-STAGE (III-IV) DISEASE. THE GAP IN KNOWLEDGE IS THE EFFECT OF THE GUT MICROBIOME ON THE NATURAL EVOLUTION OF MELANOMA AT THE PRIMARY TUMOR AND ON METASTASIS TO REGIONAL LNS. OUR HYPOTHESIS IS THAT MICROBES IN THE GUT OF MELANOMA PATIENTS INFLUENCE PRIMARY TUMOR DEVELOPMENT AND RISK FOR LN METASTASIS, SUCH THAT TARGETED MODULATION OF THE GUT MICROBIOME CAN PREVENT MELANOMA LN METASTASES. TO TEST THIS HYPOTHESIS, WE WILL: 1) IDENTIFY GUT MICROBIAL AND IMMUNOLOGIC FEATURES ASSOCIATED WITH TUMOR PROGRESSION AND LN METASTASIS IN MELANOMA PATIENTS. WE WILL COMPARE GUT MICROBIOME PROFILES AND PAIRED TISSUE IMMUNE PROFILES USING GEOMX DIGITAL SPATIAL PROFILING TO CHARACTERIZE THE IMMUNE MICROENVIRONMENT (IME) OF THE PRIMARY MELANOMA AND SLN, AND 16S GENE AMPLICON SEQUENCING AND/OR WHOLE METAGENOMIC SEQUENCING TO ANALYZE FECAL SAMPLES OF MELANOMA PATIENTS WITH: 1.1) LOW-RISK VS HIGH-RISK PRIMARY TUMORS; 1.2) NEGATIVE VS POSITIVE SLNS; AND 1.3) CLINICAL STAGE III MELANOMA RECEIVING NEOADJUVANT ICB. STATISTICAL CORRELATION ANALYSES WILL BE APPLIED TO IDENTIFY GUT MICROBIAL FEATURES ASSOCIATED WITH IMMUNE MODULATION, MELANOMA PROGRESSION AND METASTASIS. 2) DELINEATE STRATEGIES TO MODULATE GUT MICROBES TO PREVENT MELANOMA PROGRESSION AND LN METASTASIS. WE WILL INVESTIGATE THE CAUSAL RELATIONSHIP BETWEEN THE GUT MICROBIOME, TUMOR PROGRESSION, AND LN METASTASIS USING AN INDUCIBLE MODEL OF MURINE MELANOMA (CKIT:ERT2;BRAFV600E;PTENFL/FL) BY ASSESSING THE: 2.1) IMPACT OF FMT FROM RESPONDER AND NON- RESPONDER PATIENTS ON PRIMARY TUMOR PROGRESSION AND LN METASTASIS; 2.2) IME IN BOTH THE PRIMARY TUMOR AND SLN TO IDENTIFY THE MICROBIOME-DEPENDENT IMMUNOLOGICAL MECHANISMS OF TUMOR PROGRESSION; 2.3) EFFECT OF PERTURBATION OF THE GUT MICROBIOTA ON THE DEVELOPMENT OF REGIONAL LN METASTASIS. THE IMPACT OF THIS WORK WILL BE RECOGNITION OF THE GUT MICROBIOME AS A CRITICAL DETERMINANT OF MELANOMA PROGRESSION AT THE PRIMARY AND METASTASIS TO REGIONAL LNS, AIDING THE DEVELOPMENT OF NEXT GENERATION APPROACHES TO PREVENT LN METASTASIS IN MELANOMA AND OTHER CANCERS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $51.5k | 5/22/25 | ||
| Not listed | $463.6k | 4/14/25 | ||
| Not listed | $463.6k | 4/14/25 | ||
| Not listed | $530.6k | 4/26/24 | ||
| Not listed | $530.6k | 4/26/24 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
00016934S | New York University | Project Grant R01CA289456 | $228.3k | 9/11/25 | |
00016934S | New York University | Project Grant R01CA289456 | $228.3k | 9/11/25 |