Project Grant 2342511
- This $214,612 federal Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) will fund a collaborative research project to investigate how the antimicrobial functions of immune cells, specifically neutrophils, scale with body mass in terrestrial mammals. The project, led by The Research Foundation for the State University of New York (Upstate Medical Center), aims to understand how neutrophil antibacterial responses, gene expression, and energetics...
- This National Science Foundation (NSF) Biological Sciences (CFDA 47.074) project grant award, valued at $570,122.00 and effective September 1, 2024, supports a collaborative research effort to investigate innate immune responses in diverse eukaryotic organisms that consume bacteria. The project brings together a cross-disciplinary team of researchers to study innate immunity in sponges, choanoflagellates, and amoebae, which span the evolutionary transition between multicellular animals and their...
- This Project Grant award of $696,819.00 from the National Science Foundation's Biological Sciences (CFDA 47.074) program supports a collaborative research project to investigate innate immune responses in diverse microbial-feeding organisms across the evolutionary spectrum. The project brings together researchers from the University of Pittsburgh, University of Texas at Austin, and other institutions to study how sponges, choanoflagellates, and amoebae - which have high levels of microbial...
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $372,060 to the Research Foundation of the City University of New York (RFCUNY) - Brooklyn College will support research comparing the immune system structure, function, and memory in animal species with and without intact adaptive immune systems. The 3-year project aims to use single-cell RNA sequencing, immunization experiments, and pathogen exposure to better understand the evolutionary...
- The National Science Foundation (NSF) Division of Emerging Frontiers awarded a $613,690 Project Grant to the University of Rochester to investigate the evolution of immune investment strategies across amphibian ontogeny. The project, titled "Collaborative Research: INTBIO: The Evolution of Immune Investment Strategies Across Amphibian Ontogeny," falls under NSF's Biological Sciences (CFDA 47.074) program, which supports basic research to strengthen the nation's scientific enterprise....
- This three-year $713,098 National Science Foundation project grant supports research at Colorado State University-Pueblo to quantify the effects of temperature on phagocytosis by immune cells in desert tortoises. The NSF Division of Integrative Organismal Systems awarded the grant under the Biological Sciences program (CFDA 47.074), which aims to advance biological knowledge and enhance understanding of major problems. The university will study how varying temperatures impact the ability of...
- This Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) provides $645,180 to North Carolina State University to conduct a collaborative research project titled "OSIB: A Multi-Omic Evaluation of Innate Immune Responses Across Vertebrate Evolution." The research aims to investigate the evolutionary history and functional diversification of the CD300 gene family, which encodes proteins playing crucial roles in immune function and disease...
- The National Science Foundation awarded a $413,329 Project Grant under the Biological Sciences (CFDA 47.074) program to the University of Colorado Boulder to support research integrating immune system and microbiome function during amphibian development from September 1, 2021 through August 31, 2024. The award will fund research examining how the immune system and microbiome interact and influence each other during amphibian growth and maturation. A subaward of $50,000 will support related...
- This Project Grant award from the National Science Foundation's Biological Sciences program provides $643,665 to the National Marine Mammal Foundation, Inc. to conduct collaborative research on oxygen transport mechanisms in elite diving mammals. The 4-year project, beginning December 1, 2023, will evaluate and model in vivo oxygen delivery during dive simulations with California sea lions and bottlenose dolphins. It will also elucidate the biochemical mechanisms regulating red blood cell oxygen...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences Program (CFDA 47.074) is funding collaborative research led by Vanderbilt University to investigate how amphibian immune systems develop and adapt across life stages. The $274,765 project aims to: (1) use mathematical models and empirical data to understand how evolutionary history, pathogens, and environment influence T cell receptor diversity in frogs over ecological and evolutionary timescales; (2)...
COLLABORATIVE RESEARCH: SCALING OF NEUTROPHIL FUNCTIONS IN TERRESTRIAL MAMMALS -THIS PROJECT INVESTIGATES HOW ANTIMICROBIAL FUNCTIONS OF IMMUNE CELLS COMPENSATE OR ADJUST TO BODY MASS IN SMALL VS. LARGE MAMMALIAN HOSTS. HOST BODY MASS SHOULD SHAPE IMMUNE DEFENSES BECAUSE IT LIKELY AFFECTS ASPECTS OF PATHOGEN EXPOSURE, DETECTION, AND DEFENSE ACTIVATION. NEUTROPHILS ARE INNATE ANTIMICROBIAL CELLS CRITICAL TO THE OUTCOME OF INFECTIONS IN MAMMALS. ALTHOUGH ELEPHANTS HAVE DISPROPORTIONATELY MORE NEUTROPHILS THAN MICE GIVEN THEIR RELATIVE BODY MASSES, IT IS UNKNOWN WHETHER AN ELEPHANT?S NEUTROPHIL PROVIDES THE SAME DEFENSES AS A MOUSE?S DURING A BACTERIAL CHALLENGE. HOW NEUTROPHIL ANTIBACTERIAL RESPONSES AND ASSOCIATED GENE EXPRESSION AND ENERGETICS ARE RELATED TO AN ANIMAL?S BODY MASS WILL BE INVESTIGATED IN TERRESTRIAL MAMMALS WITH BODY MASSES SPANNING A RANGE FROM A FEW GRAMS (SUCH AS A MOUSE) TO SEVERAL HUNDRED KILOGRAMS (SUCH AS AN ELEPHANT). SUCH A BROAD UNDERSTANDING OF MAMMALIAN NEUTROPHIL FUNCTIONS CAN ENHANCE DISEASE-SPREAD MODELS BY PROVIDING PREDICTIONS ABOUT THE LEVEL OF IMMUNE DEFENSE EXPECTED IN SPECIES NEVER BEFORE STUDIED. PARTICIPANTS WILL DEVELOP MUSEUM DISPLAYS FOR A LOCAL MUSEUM OF SCIENCE AND TECHNOLOGY IN SYRACUSE, NY, THAT COLLABORATES IN EDUCATIONAL ACTIVITIES FOR EVERY 8TH-GRADER IN THE DIVERSE SYRACUSE CITY SCHOOL DISTRICT, EXPOSING STUDENTS FROM GROUPS UNDERREPRESENTED IN STEM TO SCIENCE AT A CRITICAL AGE. THE TEAM WILL ALSO TEACH LOCAL MIDDLE-SCHOOL STUDENTS TO USE MICROSCOPES IN SCIENTIFIC INQUIRY. THESE ACTIVITIES WILL DEMONSTRATE HOW COMPARATIVE RESEARCH IS IMPORTANT FOR UNDERSTANDING HUMAN AND ANIMAL PHYSIOLOGY AND HEALTH. THIS RESEARCH PROJECT TESTS SPECIFIC HYPOTHESES ABOUT HOW NEUTROPHIL ANTIBACTERIAL RESPONSES VARY WITH BODY MASS. PREVIOUS STUDIES RAISE THE QUESTION WHETHER A DISPROPORTIONATELY GREATER NEUTROPHIL CONCENTRATION IN LARGE MAMMALS CONVEYS ADDITIONAL IMMUNE PROTECTION OR COMPENSATES FOR LESS EFFECTIVE KILLING BY A SINGLE NEUTROPHIL. SPECIFICALLY, THE TEAM WILL ASSESS HOW NEUTROPHIL ANTIBACTERIAL FUNCTIONS CHANGE WITH BODY MASS IN 20 SPECIES OF TERRESTRIAL MAMMALS SPANNING 7 ORDERS OF MAGNITUDE IN SIZE. THE NEUTROPHIL ACTIVITIES TO BE CHARACTERIZED INCLUDE DIRECT KILLING, PHAGOCYTOSIS, METABOLIC CHANGES AND REACTIVE OXYGEN SPECIES GENERATION, AND NEUTROPHIL EXTRACELLULAR TRAPS AND ASSOCIATED CHANGES IN GENE EXPRESSION. HOW THE METABOLIC RATES OF NEUTROPHIL EXTRACELLULAR TRAPS CHANGE WITH BODY MASS IN NEUTROPHILS FROM 11 SPECIES OF PRIMATES SPANNING 5 ORDERS OF MAGNITUDE IN SIZE WILL ALSO BE MEASURED. IMMUNE DEFENSES WILL BE QUANTIFIED AGAINST A STRAIN OF ESCHERICHIA COLI, A UBIQUITOUS, ZOONOTIC PATHOGEN THAT POSES A SERIOUS THREAT TO INDUSTRIAL AGRICULTURE AND HUMAN AND NON-HUMAN ANIMALS, INCLUDING WILDLIFE, PROXIMAL TO THESE PRODUCTION SITES. THE TEAM?S WORK ADDRESSES TWO GRAND CHALLENGES IN ORGANISMAL BIOLOGY ? HOW GENOMES BECOME PHENOMES AND HOW ORGANISMS MAINTAIN STABILITY THROUGH CHANGE ? AND WILL ADVANCE UNDERSTANDING HOW BODY SIZE CONSTRAINS THE EVOLUTION OF INNATE IMMUNE DEFENSE PROCESSES IN VERTEBRATES. THROUGH AN UNPRECEDENTED COMPARATIVE APPROACH, THE RESEARCH PROMISES TO TRANSFORM HOW SCIENTISTS THINK ABOUT HOST-PARASITE INTERACTIONS. THE PROJECT WILL MAKE AVAILABLE TRANSCRIPTOMIC DATA AND A DATABASE OF IMAGES OF NEUTROPHIL DEFENSES THAT COULD BE VALUABLE FOR OTHER SYSTEMS BIOLOGY AND IMMUNE DEFENSE STUDIES. IN ADDITION, TRAINING OF POSTDOCTORAL FELLOWS AND UNDERGRADUATE AND GRADUATE STUDENTS ACROSS THE THREE COLLABORATING INSTITUTIONS WILL CONTRIBUTE TO WORKFORCE DEVELOPMENT. THIS AWARD WAS CO-FUNDED BY THE BIO-IOS-PHYSIOLOGICAL MECHANISMS AND BIOMECHANICS PROGRAM AND THE SYMBIOSIS, INFECTION, AND IMMUNITY PROGRAM. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $212.5k | 7/28/25 | ||
| Not listed | $0 | 6/27/25 | ||
| Not listed | $458.7k | 5/23/24 |