Project Grant F32AI183696
- This Project Grant award of $121,752 from the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research program (CFDA 93.855) supports research into enhancing the efficacy of echinocandin antifungal drugs for treating invasive pulmonary aspergillosis (IPA). The project aims to investigate the role of the Septation Initiation Network (SIN) kinase cascade, particularly the terminal kinase SIDB, in regulating septation and echinocandin...
- The National Institute of Allergy and Infectious Diseases (NIAID), under the Allergy and Infectious Diseases Research program (CFDA 93.855), awarded a $147,486 Project Grant to Trustees of Dartmouth College to study how the hypoxia morphology of Aspergillus fumigatus (a common fungal pathogen) impacts diagnostic methods for invasive pulmonary aspergillosis (IPA). The key objectives are to 1) investigate how the hypoxia-induced gene HrmA regulates the production of antigenic polysaccharides,...
- This $249,749 Project Grant award from the National Institute of Allergy and Infectious Diseases (CFDA 93.855 - Allergy and Infectious Diseases Research) supports research to develop a new approach for analyzing transcriptional control of virulence in the human fungal pathogen Aspergillus fumigatus (AFu). The research team will express an anti-GFP nanobody fused to a mammalian E3 ligase enzyme to trigger proteolysis of GFP fusion proteins in AFu. They will prepare GFP fusion proteins to 8...
- The federal Project Grant award of $299,697 from the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research program (CFDA 93.855) supports the development of a novel broad-spectrum antifungal agent targeting cell wall biosynthesis. The goal is to create a mechanistically unique inhibitor of the enzyme 1-3-D-glucan synthase (GS) that demonstrates potent and wide-ranging fungicidal activity, including against echinocandin-resistant...
- This Project Grant award from the National Institute of Allergy and Infectious Diseases (CFDA 93.855 - Allergy and Infectious Diseases Research) provides $152,097 to The University of Texas MD Anderson Cancer Center to conduct research on influenza- and respiratory syncytial virus-associated pulmonary aspergillosis (IAPA/RSV-APA), which are deadly secondary mold infections in immunocompromised patients. The research aims to characterize the post-viral impairment of anti-Aspergillus immune...
- This federal Project Grant award of $853,537.00 from the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research program (CFDA 93.855) supports research to understand how the fungal pathogen Aspergillus fumigatus uses melanin to evade the immune response in lung epithelial cells. The key objectives are to: [1] dissect the mechanism of how Aspergillus melanin inhibits chemokine secretion, [2] determine the signaling pathways affected by...
- This Project Grant award of $181,861, provided by the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research program (CFDA 93.855), will support research conducted by Duke University to develop novel, rapid, and noninvasive diagnostic and prognostic biomarkers for invasive aspergillosis (IA) in immunocompromised patients. The key objectives are to derive and optimize a diagnostic host gene expression signature of IA, enroll and serially...
- The National Institute of Allergy and Infectious Diseases (NIAID) awarded a $300,616 Project Grant under the Allergy and Infectious Diseases Research program (CFDA 93.855) to Shy Therapeutics, LLC to develop a novel class of small molecule antifungal therapies. The project aims to identify and optimize new chemical compounds with potent activity against drug-resistant fungal strains such as Cryptococcus neoformans and Candida auris. Key objectives include using structure-activity relationship...
- This Project Grant award of $782,178 from the National Institute of Allergy and Infectious Diseases (CFDA 93.855 - Allergy and Infectious Diseases Research) aims to develop new antifungal agents against sterolglycoside enzymes found in fungal pathogens. The research team at Stony Brook University is using a high-throughput screening approach to identify inhibitors of the sterolglycoside enzymes SGL1 and SGLA, which are essential for the pathogenicity of Cryptococcus neoformans and Aspergillus...
- The Project Grant award of $170,000.00 from the National Institute of Allergy and Infectious Diseases (NIAID) under the Allergy and Infectious Diseases Research federal grant program (CFDA 93.855) is focused on the "Structure-Based Design of Antifungal Inhibitors Targeting the Glycosylphosphatidylinositol (GPI) Ethanolamine Phosphate Transferase, MCD4". The research aims to develop new antifungal agents with novel mechanisms of action to address emerging fungal pathogens and growing...
DEVELOPMENT AND CHARACTERIZATION OF HUMAN IPSC-DERIVED NEUTROPHIL THERAPIES AGAINST PATHOGENIC ASPERGILLI - PROJECT SUMMARY OVER 300,000 NEW GLOBAL CASES OF INVASIVE PULMONARY ASPERGILLOSIS (IPA) ARE REPORTED EACH YEAR, WITH A MORTALITY RATE AS HIGH AS 90%. THEREFORE, THE DEVELOPMENT OF EFFECTIVE ANTIFUNGAL TREATMENTS IS OF HIGH MEDICAL SIGNIFICANCE. THE CURRENT ANTIFUNGAL ARSENAL CONSISTS OF 3 CORE CLASSES OF DRUGS: THE AZOLES, ECHINOCANDINS AND POLYENES. HOWEVER, INCREASING ANTIFUNGAL RESISTANCE WITHIN ASPERGILLI (AZOLES AND ECHINOCANDINS) AND SECONDARY CYTOTOXICITY (POLYENES) LIMITS THE TREATMENT OPTIONS. CONSEQUENTLY, THERE IS A NEED FOR THE DEVELOPMENT OF ALTERNATIVE TREATMENT STRATEGIES TO CONTROL IPA PROGRESSION. GRANULOCYTE TRANSFUSION THERAPY (GTX) HAS BEEN PURSUED AS AN ALTERNATIVE TREATMENT STRATEGY FOR MICROBIAL INFECTIONS, BUT THE SHORT LIFESPAN OF PRIMARY HUMAN NEUTROPHILS AND INSUFFICIENT DONOR SUPPLY HAS LIMITED THE USE OF THIS APPROACH. INDUCED HUMAN PLURIPOTENT STEM CELL (IPSC) DERIVED NEUTROPHILS (INEUTROPHILS) CAN BE PRODUCED IN LARGE QUANTITIES INDEPENDENT OF A DONOR, ARE GENETICALLY MALLEABLE TO PERMIT ENGINEERING, AND MAY SERVE AS INVALUABLE REPLACEMENT TO PRIMARY NEUTROPHILS IN GTX. HOWEVER, THE EFFICACY OF INEUTROPHILS IN CONTROLLING FUNGAL GROWTH IS CURRENTLY UNKNOWN. OUR LAB AND OTHERS HAVE RECENTLY DISCOVERED THAT DELETION OF GATA1 IN IPSCS, A TRANSCRIPTION FACTOR THAT IS IMPORTANT IN EOSINOPHIL AND BASOPHIL DIFFERENTIATION, RESULTS IN A HIGHLY HOMOGENOUS CULTURE OF MATURE INEUTROPHILS THAT ARE MORE PHENOTYPICALLY SIMILAR TO PRIMARY HUMAN NEUTROPHILS THAN PREVIOUSLY CHARACTERIZED WILD-TYPE (WT) INEUTROPHILS. THIS PUTS US IN A UNIQUE POSITION TO USE INEUTROPHILS IN BOTH THERAPEUTIC AND MECHANISTIC STUDIES TO ASSESS THEIR INTERACTIONS WITH HUMAN FUNGAL PATHOGENS. THIS PROPOSAL WILL THEREFORE LEVERAGE WT AND GATA1-/- INEUTROPHILS IN COMBINATION THERAPY WITH CURRENT ANTIFUNGALS TO INHIBIT THE GROWTH OF CLINICALLY RELEVANT ASPERGILLI, AND TO GENERATE HOST PATTERN RECOGNITION RECEPTOR (PRR) KNOCKOUTS TO CHARACTERIZE MECHANISMS OF FUNGAL RECOGNITION THAT DRIVE NEUTROPHIL ANTIFUNGAL ACTIVITY. THIS PROPOSAL SEEKS TO ACHIEVE THESE GOALS BY COMBINING IN VITRO IMMUNOLOGY TECHNIQUES WITH IPSC AND FUNGAL GENETICS. AIM 1 WILL ASSESS THE ABILITY OF INEUTROPHILS TO INDEPENDENTLY INHIBIT THE GROWTH OF ISOLATES FROM THE TWO MOST COMMON CAUSATIVE AGENTS OF IPA, A. FUMIGATUS AND A. FLAVUS. THESE FINDINGS WILL THEN BE EXPANDED TO ASSESS THE ABILITY OF INEUTROPHILS TO SYNERGIZE WITH CURRENT ANTIFUNGALS IN VITRO TO FURTHER ENHANCE FUNGAL KILLING. AIM 2 WILL THEN BEGIN TO DISSECT HOW NEUTROPHILS SENSE PATHOGENIC FUNGI IN THEIR ENVIRONMENT BY CHARACTERIZING THE RECEPTOR NETWORK NEEDED TO RECOGNIZE THE IMMUNOGENIC POLYSACCHARIDE SS(1,3)-GLUCAN IN THE FUNGAL CELL WALL. THIS WILL BE ACHIEVED BY GENERATING INEUTROPHIL SS(1,3)-GLUCAN RECEPTOR KNOCKOUTS AND BY UTILIZING ASPERGILLUS MUTANTS WITH ALTERED SS(1,3)-GLUCAN EXPOSURE LEVELS. TOGETHER, THIS APPROACH WILL PROVIDE ESSENTIAL TRAINING OPPORTUNITIES IN STEM CELL ENGINEERING, IMMUNOLOGY TECHNIQUES, AND FILAMENTOUS FUNGAL GENETICS, WHILE ALSO PROVIDING IMPORTANT INSIGHTS INTO THE INEUTROPHIL/NEUTROPHIL ANTIFUNGAL RESPONSE.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($24k) | 12/26/24 | ||
| Not listed | $4.7k | 5/13/24 | ||
| Not listed | $4.7k | 5/13/24 | ||
| Not listed | $0 | 4/9/24 | ||
| Not listed | $0 | 4/9/24 |