Project Grant R01HL171135
- Project Grant Award Summary The University of Maryland, College Park received a $179,296 Project Grant from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), awarded on June 12, 2025, with a completion date of July 11, 2026. This research initiative investigates the interplay between mechanistic target of rapamycin (mTOR) inhibitors and endothelial cell-to-cell junction dynamics, with specific focus on understanding how...
- This $693,942 National Institutes of Health National Heart Lung and Blood Institute Project Grant funds research at Northwestern University aimed at elucidating epigenetic modifiers of regulatory T cell function following viral pneumonia. The goal is to establish causal links between DNA methyltransferase activity, the DNMT adapter UHRF1, and DNA hypermethylation signatures in regulatory T cells during aging and their impaired reparative function after severe viral pneumonia. Through three...
- This $131,988 Project Grant from the National Heart, Lung and Blood Institute, part of the Department of Health and Human Services, supports research targeting determinants of SARS-CoV-2 host interaction in airways. Funded through the Cardiovascular Diseases Research program, the grant aims to identify master regulator proteins that mechanistically regulate SARS-CoV-2 interactions in the airways. Using organotypic airway epithelial culture and systems biology tools at Columbia University, the...
- The Broad Institute of MIT and Harvard received a $130,593 Project Grant awarded August 1, 2025, by the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837). The grant funds a two-year research project (through July 31, 2027) investigating histone acetylation modulators' function in alveolar regeneration and disease pathogenesis. The research focuses on understanding how lysine acetyltransferase 8 (KAT8) and related epigenetic factors...
- Federal Project Grant Award Summary Weill Medical College of Cornell University received a $791,503 Project Grant from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), awarded September 15, 2025, with completion targeted for June 30, 2029. This research initiative investigates novel roles of the thrombin receptor Protease Activated Receptor-1 (PAR1) in lung lymphatic function and acute respiratory distress syndrome (ARDS)....
- Federal Grant Award Summary The National Heart, Lung, and Blood Institute (NHLBI) awarded a $761,262 Project Grant to The Trustees of Columbia University in the City of New York (Health Sciences Division) for research titled "Intravenously Injected Mesenchymal Stromal Cells Protect Against Acute Lung Injury by Transferring Mitochondria to Restore Endothelial Function." The award, effective September 1, 2025, through June 30, 2029, falls under the Cardiovascular Diseases Research...
- This $408,599 Project Grant award from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837) supports research to investigate the role of the TGF-beta/SMAD3 pathway in endothelial damage and cardiac remodeling caused by doxorubicin chemotherapy. The research aims to assess how doxorubicin-induced endothelial reprogramming via this pathway contributes to the development of cardiomyopathy, and whether suppressing SMAD3...
- This Project Grant, awarded by the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), supports comprehensive research investigating the mechanisms by which pulmonary influenza A virus (IAV) infection promotes cardiovascular disease. The research, led by Dr. Jeffrey Downey at the Icahn School of Medicine at Mount Sinai in New York, employs innovative mouse models to examine how IAV translocates from the lung to the heart and...
- Federal Project Grant Award Summary Albert Einstein College of Medicine received a $271,562 Project Grant from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), awarded July 9, 2025, with completion targeted for March 31, 2028. The grant funds research to elucidate the interplay between DDX41 (DEAD-box helicase 41) and CUX1 (cut-like homeobox 1) mutations in hematopoiesis, addressing gaps in understanding myelodysplastic...
- Project Grant Summary The University of Toledo Health Science Campus Division received a $1,697,673 Project Grant award from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), effective June 9, 2025, through February 28, 2029. This research initiative investigates novel cysteinyl leukotriene receptor signaling mechanisms in regulating cellular and molecular events associated with lung inflammation. The project examines how...
KMT2A/MLL1 REGULATION OF ENDOTHELIAL ACTIVATION - PROJECT SUMMARY / ABSTRACT EXCESSIVE ENDOTHELIAL INFLAMMATION, 'ENDOTHELIITIS,' IS A HALLMARK PATHOLOGIC FEATURE OF SEVERE SARS-COV2 INFECTION. THE SEQUALAE OF ENDOTHELIITIS, SUCH AS MICROTHROMBOSIS AND TISSUE HYPERPERMEABILITY, CULMINATE IN A MALADAPTIVE HOST RESPONSE CHARACTERIZED BY INTERSTITIAL EDEMA, TISSUE DAMAGE, AND END ORGAN DYSFUNCTION. DESPITE ADVANCES IN VACCINES AND ANTIVIRAL TREATMENTS, THE MOST SEVERELY ILL PATIENTS SUFFERING FROM SARS-COV2 RELATED ENDOTHELIITIS HAVE AN ELEVATED RISK OF MORTALITY. THERE ARE CURRENTLY NEITHER SPECIFIC MEDICATIONS AVAILABLE TO TREAT NOR TO PREVENT ENDOTHELIITIS. CURRENT THERAPIES FOR SEVERE SARS-COV-2 INFECTION ARE LIMITED TO NON-SPECIFIC STEROIDS, IMMUNOMODULATORS AND ANTICOAGULANTS: ALL ARE LIMITED IN CLINICAL USE DUE TO SIGNIFICANT RISK PROFILE FROM OFF-TARGET EFFECTS. THUS, A CRITICAL NEED EXISTS FOR UNDERSTANDING SPECIFIC REGULATORS OF THE DYSFUNCTIONAL ENDOTHELIAL RESPONSE FOR DEVELOPMENT OF TARGETED THERAPIES. UTILIZING HUMAN SARS-COV2 SPECIMENS AND MULTIPLE MURINE CORONAVIRUS MODELS, WE IDENTIFY A NOVEL ROLE FOR HISTONE METHYLTRANSFERASE MLL1 IN REGULATING GENE EXPRESSION CENTRAL TO THE ENDOTHELIITIS RESPONSE: CELLULAR ADHESION MOLECULES (CAMS) AND PRO-COAGULANT MEDIATORS (PCMS). THROUGH A SERIES OF EXPERIMENTS, WE HAVE IDENTIFIED SPECIFIC SIGNAL TRANSDUCER AND ACTIVATORS OF TRANSCRIPTION (STATS) AS IMPORTANT DRIVERS OF VIRAL-INDUCED MLL1 EXPRESSION AND IL-1 RECEPTOR-ASSOCIATED KINASES (IRAKS) AS KEY REGULATORS OF MLL1 DEGRADATION. HENCE, WE IDENTIFIED THAT THE IMBALANCE OF STAT-MEDIATED EXPRESSION AND IRAK-MEDIATED DEGRADATION OF MLL1 AUGMENTS VIRAL ENDOTHELIITIS. THESE RESULTS HAVE LED TO OUR HYPOTHESIS THAT ENDOTHELIITIS GENE EXPRESSION IN RESPONSE TO CORONAVIRUS IS MECHANISTICALLY DRIVEN BY THE STAT-MLL1-IRAK PATHWAY AND PROMOTES OVERT ENDOTHELIAL ACTIVATION, MICROTHROMBOSIS, AND END-ORGAN DAMAGE. WE FURTHER POSTULATE THAT ENDOTHELIAL HOMEOSTASIS MAY BE RESTORED VIA NANOPARTICLE ENCAPSULATED MLL1 INHIBITOR TARGETED TO THE ENDOTHELIAL CELLS, RESULTING IN ATTENUATION OF VIRAL-INDUCED ENDOTHELIITIS. THIS HYPOTHESIS WILL BE INVESTIGATED VIA THE FOLLOWING SPECIFIC AIMS: AIM 1: TO DETERMINE THE MECHANISM(S) BY WHICH MLL1 TARGETS ENDOTHELIAL CAMS AND PCMS PROMOTOR REGIONS. AIM 2: TO DETERMINE THE ROLE OF STAT-1/3 IN ENDOTHELIAL MLL1 INDUCTION AND IRAK4 IN MLL1 DEGRADATION. AIM 3: TO DETERMINE FUNCTIONAL IMPACT OF ENDOTHELIAL SPECIFIC MLL1 INHIBITION ON EC ADHESIVE CHARACTERISTICS AND THROMBOTIC PROPENSITY IN VIVO. COMPLETION OF THESE AIMS WILL INCREASE OUR MECHANISTIC UNDERSTANDING OF ENDOTHELIAL MLL1 AS MASTER REGULATOR OF ENDOTHELIITIS-RELATED GENES IN AN INFECTIOUS CONTEXT. THE RESULTS FROM THIS PROPOSAL WILL DEFINE FOR THE FIRST TIME THE ABILITY OF AN ENDOTHELIAL- TARGETED THERAPY TO INHIBIT THE PATHOLOGIC FEATURES OF SEVERE SARS-COV2 INFECTION.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $616.9k | 5/20/25 | ||
| Not listed | ($27k) | 7/22/24 | ||
| Not listed | ($27k) | 7/22/24 | ||
| Not listed | $634.3k | 6/5/24 | ||
| Not listed | $634.3k | 6/5/24 |