Project Grant R33CA302491
- This federal Project Grant award, valued at $401,829.00 and awarded by the National Cancer Institute under the Cancer Biology Research program (CFDA 93.396), supports innovative research by Weill Medical College of Cornell University to develop transformative methods for high-throughput single-cell mapping of DNA-binding proteins. The project, titled "Precision Single-Cell Mapping of Chromatin-Associated Protein Activity by Molecular Footprinting to Chart Disruptions to Gene Regulation...
- This $204,027 federal Project Grant award from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) is supporting the Weill Medical College of Cornell University in expanding single-cell and spatial technologies to link clonal genotypes with phenotypes during cancer evolution. The grant aims to develop advanced single-cell methods that can capture multiple data modalities, including genotypes, transcriptomes, methylomes, and protein expression, to better understand how somatic...
- This Project Grant award for $450,904 from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) will support the development of a single-cell (phospho-)proteomics platform at the Pacific Northwest National Laboratory, operated by Battelle Memorial Institute. The platform aims to address key challenges in single-cell proteomics analysis, including low recovery for phospho-enrichment, insufficient mass spectrometry sensitivity, and low sample throughput. This new platform will...
- This $292,028 Project Grant awarded by the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) supports research to investigate the mechanisms by which oncogene amplification leads to genome instability and the development of therapy-resistant cancer clones. The research will be conducted by the Sloan-Kettering Institute for Cancer Research in New York and is scheduled to run from August 1, 2025 to July 31, 2030. Using single-cell genomic sequencing techniques, the project aims...
- This federal Project Grant award from the National Cancer Institute (NCI) under CFDA 93.396 (Cancer Biology Research) provides $182,755 to Cold Spring Harbor Laboratory (CSHL) to conduct research on genetic technology development for understanding lineage plasticity mechanisms in cancer. The award began on August 21, 2025 and is scheduled for completion on July 31, 2030. The key products and services to be delivered through this grant include: 1) developing a CRISPR screening methodology for...
- This federal Project Grant award of $100,760 from the National Cancer Institute's (NCI) Cancer Research Manpower program (CFDA 93.398) supports research conducted by the Sloan-Kettering Institute for Cancer Research in New York City. The project aims to engineer biomaterials that can modulate the tumor immune microenvironment, with a focus on developing an innovative RNA interference (RNAi) therapy to inhibit the cancer-promoting factors cyclophilin A and E-selectin in multiple myeloma....
- The National Cancer Institute (CFDA 93.396 - Cancer Biology Research) awarded a $1,625,853 Project Grant to New York University (NYU) on December 13, 2024. The grant will support NYU's research to map and characterize the role of 3D "hubs" - regulatory DNA elements that interact with multiple loci - in the context of T-cell leukemia (T-ALL), early T-cell progenitor leukemia (ETP-ALL), and T-cell lymphoma. The project aims to better define how these 3D chromatin structures are rewired...
- The National Cancer Institute (NCI) awarded a $1,034,176 Project Grant to the Sloan-Kettering Institute for Cancer Research under the Cancer Biology Research program (CFDA 93.396) with an award date of August 18, 2025. The grant aims to understand the mechanisms of aberrant RNA splicing and how it drives the development of various hematological malignancies, including myelodysplastic syndrome, chronic lymphocytic leukemia, and acute myeloid leukemia. The research builds on the institution's past...
- The National Cancer Institute (CFDA 93.393 - Cancer Cause and Prevention Research) awarded a $3,201,530 Project Grant to the Sloan-Kettering Institute for Cancer Research to investigate the mechanisms underlying extrachromosomal DNA (ecDNA) segregation and repair in cancer. The key focus areas include: Exploring how the circular topology of ecDNA affects its function and maintenance, specifically examining the RNA-dependent physical tethering of ecDNA to mitotic chromosomes that facilitates...
- This $238,722 federal Project Grant awarded on August 18, 2025 by the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) to the Sloan-Kettering Institute for Cancer Research supports research to investigate the role of mutagenic DNA repair during the persistence of cancer cells. The research aims to define the specific mechanisms that promote mutagenic DNA repair and drive acquired drug resistance in persister cancer cells, focusing on the role of the microhomology-mediated end...
This federal Project Grant award of $418,176 from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) supports the development and validation of a novel approach called "Programmable Nucleic Acid Cytometry" at the Sloan-Kettering Institute for Cancer Research. The project aims to advance this innovative method for profiling rare cell populations from tumors and tissues, which offers advantages over traditional antibody-based cell isolation techniques. The work will build upon the institute's recent development of the "Programmable Enrichment via RNA FISH by Sequencing" (PERFF-SEQ) technique, which couples fluorescence in situ hybridization (FISH) with single-cell RNA sequencing. This Project Grant, with a performance period from September 1, 2025 to August 31, 2028, will further refine and validate the programmable nucleic acid cytometry approach to enable improved isolation and characterization of diverse cell populations in cancer research settings.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $418.2k | 8/20/25 |