Project Grant K01ES036182
- This federal Project Grant award in the amount of $155,605 was provided by the National Cancer Institute (CFDA 93.398 Cancer Research Manpower) to Brigham & Women's Hospital Inc., a subsidiary of Partners Healthcare System, to conduct research on the association between contraception use and ovarian/breast cancers through metabolic profiling. The overarching goal of this 1-year project is to comprehensively quantify changes in metabolites and pathways associated with oral contraception...
- This Project Grant award from the National Cancer Institute (CFDA 93.398 Cancer Research Manpower program) provides $170,640 to the Dana-Farber Cancer Institute in Massachusetts to support research into the role of histone cleavage in breast cancer. The project aims to investigate how the histone demethylase KDM4C drives tumor growth in triple-negative breast cancer, a subtype with high treatment resistance and metastasis risk. Key objectives include determining if KDM4C prevents proteolytic...
- This Project Grant award from the National Cancer Institute (CFDA 93.396 - Cancer Biology Research) provides $527,159 in funding to Brigham & Women's Hospital, a subsidiary of Partners Healthcare System, to conduct research on the role of DNA damage and cell fate plasticity in the initiation of BRCA1-related basal-like breast cancer. The key objectives of the research are to: 1) study whether BRCA1-deficient luminal mammary cells acquire a fetal mammary stem cell-like gene expression program...
- This federal Project Grant award from the National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health (CFDA 93.113) program, provides $121,057 to Trustees of Boston University (doing business as Boston University Medical Campus) to conduct a prospective study investigating associations between per- and polyfluoroalkyl substance (PFAS) mixtures and pregnancy outcomes among Black women. The research aims to: 1) evaluate the association of a PFAS mixture with adverse...
- This federal Project Grant award of $165,883 from the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) supports a research project led by Dr. Xinyuan (Cindy) Zhang at Brigham & Women's Hospital, a subsidiary of Partners Healthcare System, to improve early detection, causal inference, and lifestyle-based prevention for hepatocellular carcinoma (HCC). The key objectives of this 2-year research project are to: Use computational biology and system biology techniques to...
- This Project Grant award from the National Cancer Institute (CFDA 93.398 Cancer Research Manpower program) provides $107,633 to Virginia Commonwealth University to conduct research examining the relationship between air pollution and lung and breast cancer risk using spatial data science methods. The award period runs from August 1, 2025 to July 31, 2027. The research aims to develop comprehensive, spatially-driven pollutant exposure metrics and assess their effects on cancer outcomes across the...
- 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...
- The federal Project Grant award for $172,193 was provided by the National Cancer Institute (NCI) under the Cancer Research Manpower program (CFDA 93.398) to the Dana-Farber Cancer Institute, Inc. (DFCI) located in Massachusetts. The goal of this 5-year project is to characterize subtype-specific gene regulatory elements in translocation renal cell carcinoma (TRCC), a rare and aggressive form of kidney cancer, by identifying differentially active transcription factors, determining their metabolic...
- This Project Grant award of $162,305 from the National Cancer Institute (CFDA 93.398 - Cancer Research Manpower) supports research to model and characterize the early cellular and molecular changes that occur upon activation of the anaplastic lymphoma kinase (ALK) in lung cancer. The project, led by Dr. Peggy Hsu at the University of Michigan, aims to develop a single cell atlas of ALK+ lung cancer, examine the role of the transcription factor NRF2 in ALK+ lung cancer initiation, and provide a...
- This $126,970 Project Grant award from the National Institute of Environmental Health Sciences (NIEHS) under the Environmental Health federal grant program (CFDA 93.113) supports research to investigate the relationship between exposure to endocrine-disrupting chemicals (EDCs) and the development of metabolic syndrome (MetS) in a cohort of Hispanic women. The research aims to expand the principal investigator's expertise in environmental epidemiology and exposure-mixture analysis, as well as...
QUANTIFYING EARLY BIOMARKERS OF MAMMARY CARCINOGENESIS WITH MULTIPLEXED SPATIAL BIOLOGY - PROJECT SUMMARY/ ABSTRACT DR. JENNIFER KAY IS A TENURE TRACK-EQUIVALENT RESEARCH SCIENTIST AT SILENT SPRING INSTITUTE, AN INDEPENDENT, NON- PROFIT RESEARCH CENTER DEDICATED TO UNCOVERING ENVIRONMENTAL CAUSES OF BREAST CANCER AND OTHER WOMEN'S HEALTH ISSUES. DR. KAY DEVELOPS NEW APPROACHES TO IDENTIFY CHEMICAL EXPOSURES THAT INCREASE BREAST CANCER RISK AND QUANTIFY THEIR EFFECTS BY INTEGRATING MECHANISTIC EVIDENCE WITH EXPERIMENTAL AND OBSERVATIONAL STUDIES IN ANIMALS AND HUMANS. GENOTOXICITY AND/OR ENDOCRINE ACTIVITY ARE FEATURES OF MOST KNOWN HUMAN BREAST CARCINOGENS, AND THE COMBINATION OF CANCER INITIATION BY GENOTOXICITY AND PROMOTION BY ENDOCRINE SIGNALING IS PREDICTED TO INCREASE RISK COMPARED TO EITHER ALONE. DRAWING ON HER EXPERIENCE STUDYING MECHANISMS OF MUTAGENESIS AND CARCINOGENESIS IN THE LIVER, INTESTINES, AND LUNG, WITH THIS K01 CAREER DEVELOPMENT AWARD, SHE WILL INVESTIGATE THE MECHANISTIC INTERACTIONS OF ESTROGENICITY AND GENOTOXICITY IN BREAST CANCER USING A RODENT MODEL AND NOVEL MULTIPLEXED SPATIAL BIOLOGY APPROACHES. THIS AWARD WILL PROVIDE DR. KAY THE OPPORTUNITY TO 1) HONE GRANTSMANSHIP AND PROJECT MANAGEMENT SKILLS, 2) BECOME A LEADER IN BREAST CANCER PREVENTION AND TOXICOLOGY, AND 3) GENERATE NEW MECHANISTIC KNOWLEDGE THAT CAN SUPPORT HAZARD AND RISK PREDICTION. DR. KAY'S PRIMARY MENTOR, RUTHANN RUDEL, RESEARCH DIRECTOR OF SILENT SPRING INSTITUTE, WILL HELP HER DESIGN RESEARCH THAT CAN SHAPE CANCER RISK ASSESSMENT AND PREVENTION STRATEGIES, AND SHE WILL HELP DR. KAY TRANSLATE FINDINGS TO NATIONAL AND INTERNATIONAL SCIENTIFIC ORGANIZATIONS, GOVERNMENT DECISION MAKERS, AND LAY AUDIENCES. CO-MENTOR DR. LAURA VANDENBERG OF UNIVERSITY OF MASSACHUSETTS AMHERST-AN EXPERT IN RODENT MAMMARY GLAND BIOLOGY AND CARCINOGENESIS-WILL TRAIN HER IN DIVERSE TECHNIQUES FOR STUDYING CHEMICAL EFFECTS ON THE BREAST USING RATS. THE PROPOSED PROJECT, "QUANTIFYING EARLY BIOMARKERS OF MAMMARY CARCINOGENESIS WITH MULTIPLEXED SPATIAL BIOLOGY," WILL CHARACTERIZE THE MECHANISTIC INTERACTIONS BETWEEN GENOTOXICITY AND ESTROGENICITY IN CHEMICALLY INDUCED MAMMARY CARCINOGENESIS. BIOMARKERS OF EFFECT WILL BE TRACKED IN MAMMARY TISSUE STRUCTURES AND EPITHELIAL CELL TYPES IN THE DAYS AND WEEKS AFTER EXPOSURE TO CHEMICALS THAT ARE GENOTOXIC, ESTROGENIC, OR BOTH, PRECEDING TUMOR DEVELOPMENT. EXPANDING UPON HER PREVIOUS EXPERIENCE WITH SPATIAL BIOLOGY AND QUANTITATIVE BIOIMAGING, DR. KAY WILL INTEGRATE MOLECULAR MARKERS MEASURED VIA MULTIPLEXED IMMUNOFLUORESCENCE WITH MICROSCOPIC ALTERATIONS TO TISSUE MORPHOLOGY IN ADJACENT HISTOPATHOLOGICAL SECTIONS AND STRUCTURAL EFFECTS IN WHOLE-MOUNT TISSUES. IN ADDITION, THIS PROJECT WILL, FOR THE FIRST TIME, MEASURE THE ABILITY FOR CHEMICAL EXPOSURES TO ALTER ESTRADIOL LEVELS IN MAMMARY TISSUE AS WELL AS SERUM. THIS RESEARCH ADVANCES NIEHS GOALS BY ENHANCING MECHANISTIC UNDERSTANDING OF ENDOCRINE DISRUPTION AND GENOTOXICITY IN BREAST CANCER, LAYING A FOUNDATION FOR ASSESSING CARCINOGENIC EFFECTS OF MIXTURES AND PREDICTING RISK WITH TOXICOLOGICAL METHODS THAT ARE MATCHED TO THE UNDERLYING PROCESSES. THE TOOLS DEVELOPED HERE CAN BE APPLIED TO STUDY MOLECULAR EFFECTS OF CARCINOGENS THAT ACT VIA OTHER MECHANISMS IN A WIDE RANGE OF TISSUES.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $156.1k | 3/17/25 | ||
| Not listed | $156.1k | 4/18/24 | ||
| Not listed | $156.1k | 4/18/24 |