Project Grant R03ES036276
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) totaling $192,927 aims to develop a model-data framework to improve predictions of red tide events and their impacts on respiratory illnesses in coastal communities under changing temperatures. The research is being conducted by an interdisciplinary team at Florida State University, a leading research institution. The project will focus on the Gulf Coast region of Southwest Florida, a hotspot for...
- This Project Grant award from the National Institute of Environmental Health Sciences (NIEHS) under the Environmental Health federal grant program (CFDA 93.113) provides $153,851.00 to Florida Gulf Coast University to identify and characterize changes in plasma protein abundance in Florida manatees and sea turtles that have been naturally exposed to the Florida red tide. The goal is to develop diagnostic biomarkers for red tide intoxication in humans, as members of the public can be exposed to...
- The University of Florida was awarded a $416,924 Project Grant from the National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health federal grant program (CFDA 93.113), to investigate the impact of airborne red tide toxins following major hurricanes on airway health. The project seeks to study the natural history of red tide blooms and the effects of atmospheric aging on airway barrier function and inflammation using primary human airway cells. The overarching...
- This $406,843 Project Grant awarded by the National Institute of Environmental Health Sciences (NIEHS) under the Environmental Health program (CFDA 93.113) supports research at the University of South Florida (USF) to investigate the role of G protein-coupled receptors (GPCRs) in the bioluminescence signaling of the red tide dinoflagellate Lingulodinium polyedra. The key objectives are to: 1) evaluate the mRNA levels of a target GPCR candidate (RC3) and its effectors using RT-qPCR and...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports a collaborative research effort to advance predictions of red tide events and their impact on respiratory illnesses along the U.S. Gulf Coast. The $107,072 award to Florida Gulf Coast University will fund an interdisciplinary team's development of an innovative model-data integration framework. This research aims to improve forecasting of harmful algal blooms, known as "red...
- This Project Grant award for $448,383 from the National Institute of Environmental Health Sciences (NIEHS) under the Environmental Health (CFDA 93.113) federal grant program will fund research to determine the impact of maternal ingestion of cyanotoxins on the development and function of the stress axis in offspring. The primary objectives are to: 1) Determine if sub-chronic maternal exposure to the cyanotoxin microcystin-LR disrupts the development of brain regions that control the stress...
- The National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health federal grant program (CFDA 93.113), awarded a $306,842 project grant to Anchorchem LLC on Jul 19, 2025. The grant aims to address the global health threat posed by harmful algal blooms (HABs) and the associated risks from cyanopeptides, specifically anabaenopeptins (ABPs). The project seeks to create a stable supply chain of these compounds to enable critical biological studies needed to assess their...
- This $793,443 Project Grant award from the National Institute of Environmental Health Sciences (CFDA 93.113 Environmental Health) aims to characterize the immediate and cumulative health impacts of extreme weather events in communities within the Gulf and Southeastern Atlantic U.S. coastal regions. The study, conducted by Trustees of Tufts College, will (1) assess community vulnerability to these events based on infrastructure, environmental, and socioeconomic factors, (2) evaluate the...
- This Project Grant award from the National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health (CFDA 93.113) federal grant program, provides $695,853 to the Arkansas Children's Research Institute (ACRI) from December 1, 2024 to November 30, 2029. The project will investigate the impact of prenatal and postnatal exposure to per- and polyfluoroalkyl substances (PFAS) on children's development, examining the role of placental function and the potential protective...
- This federal Project Grant award from the National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health federal grant program (CFDA 93.113), provides $546,350 to fund a study to "Define the Neurotoxic and Neurodevelopmental Health Risks of Per- and Polyfluoroalkyl Substances (PFAS)". The key objectives of this 4.5-year research project are to: 1) Characterize the mechanisms by which PFAS facilitate neuronal uptake and accumulation; 2) Elucidate the...
BREVETOXINS AND EMERGENCY ENCOUNTERS AMONG CHILDREN (BEECH) - PROJECT SUMMARY ALGAL BLOOMS - THE RAPID GROWTH OF PHOTOSYNTHETIC ORGANISMS IN WATER - ENDANGER HUMAN HEALTH, BUT THERE IS A STUNNING LACK OF DATA REGARDING EFFECTS ON CHILDREN. THE ALGAE K. BREVIS BLOOMS IN THE GULF OF MEXICO ALMOST ANNUALLY, CAUSING `RED TIDES' THAT LAST FOR MONTHS TO YEARS. K. BREVIS IS FRAGILE, BREAKING IN THE SURF AND RELEASING POTENT BREVETOXINS (NATURAL POISONS THAT ARE ODORLESS AND TASTELESS) INTO THE WATER AND MARINE AEROSOL THAT CAN BE CARRIED INLAND BY WIND, POTENTIALLY BEING INHALED BY THOUSANDS OF CHILDREN LIVING IN COASTAL AREAS. ADDITIONAL EXPOSURE ROUTES INCLUDE THE INGESTION OF CONTAMINATED SEAFOOD AND SEAWATER. EPIDEMIOLOGIC STUDIES OF ADULTS HAVE LINKED BREVETOXIN EXPOSURES TO GASTROINTESTINAL INFLAMMATION, RESPIRATORY IRRITATION, AND NEUROLOGICAL PROBLEMS. BECAUSE CHILDREN HAVE SMALLER BODY SIZES, INHALE MORE AIR, AND CONSUME MORE FOOD AND WATER THAN ADULTS, IT IS VERY LIKELY THEY ENCOUNTER HIGHER DOSES OF BREVETOXIN EXPOSURES. IN ADDITION, PROTECTIVE BODILY SYSTEMS FOR DETOXIFICATION ARE NOT FULLY DEVELOPED, LEAVING CHILDREN AT INCREASED RISK FOR BREVETOXIN-INDUCED ILLNESSES. HOWEVER, NO STUDY TO DATE HAS INVESTIGATED THE IMPACTS OF BREVETOXIN EXPOSURES AMONG CHILDREN. WITHOUT EPIDEMIOLOGIC DATA SPECIFIC TO THIS POPULATION, SCIENTIFIC KNOWLEDGE REQUIRED FOR TAILORING RISK COMMUNICATION AND PUBLIC HEALTH INTERVENTIONS REMAINS INCOMPLETE, ALLOWING ANY HEALTH RISKS TO CHILDREN TO PERSIST. TO ADDRESS THIS CRITICAL GAP, WE ARE PROPOSING THE FIRST POPULATION-BASED STUDY OF HEALTH EFFECTS FROM RESIDENTIAL BREVETOXIN EXPOSURES AMONG CHILDREN. OUR INTERDISCIPLINARY TEAM IS WELL-SUITED TO CONDUCT THIS WORK GIVEN OUR COMPLEMENTARY EXPERTISE IN ENVIRONMENTAL EPIDEMIOLOGY, PEDIATRIC HEALTH, EMER- GENCY MEDICINE, AND MARINE SCIENCES. BY SPATIOTEMPORALLY LINKING K. BREVIS MONITORING DATA FROM THE GULF OF MEXICO WITH EMERGENCY DEPARTMENT RECORDS FOR CHILDREN AGED 0-18 YEARS RESIDING IN SOUTHWEST FLORIDA FROM 2012 THROUGH 2019, THIS WORK WILL LEVERAGE ESTABLISHED RESOURCES TO COST- EFFECTIVELY ASSESS RESIDENTIAL BREVETOXIN EXPOSURES AS A TRIGGER FOR SEEKING EMERGENCY HEALTHCARE AND IDENTIFY THE BODILY SYSTEMS MOST AFFECTED. IN ADDITION, THIS WORK WILL PRODUCE MAPS OF K. BREVIS CONCENTRATIONS IN GULF WATERS BY RESIDENTIAL AREAS, PROVIDING A VALUABLE RESOURCE FOR FUTURE EPIDEMIOLOGIC STUDIES. FINALLY, THE FINDINGS OF THIS WORK WILL SERVE AS A BASIS TO IMPROVE BREVETOXIN EXPOSURE ASSESSMENT METHODS AND DESIGN A PROSPECTIVE COHORT FOCUSED ON THE HEALTH EFFECTS OF OCEAN-RELATED EXPOSURES. ULTIMATELY, THE GOAL IS FOR THIS PROJECT AND RELATED FUTURE PROPOSALS IS TO CATALYZE RESEARCH AT THE INTERSECTION OF OCEANS AND HUMAN HEALTH, FOSTERING THE DEVELOPMENT OF IMPROVED RISK COMMUNICATION AND POLICIES TO PROMOTE HEALTHY LIVES.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $75.0k | 6/10/25 | ||
| Not listed | $75.0k | 7/9/24 | ||
| Not listed | $75.0k | 7/9/24 |