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46,585 grants matching heart failure

Cardiac metabolism and heart failure

$457,427
Rong Tian · University Of Washington · R01 · FY2010 · HL

LXR-Dependent Cholesterol Sensing

$457,382
Ira G Schulman · University Of Virginia · R01 · FY2024 · DK

Novel exosomal niches for alveolar stem cell-bassed repair of ARDS

$457,366
Hong-Long Ji · Loyola University Chicago · R01 · FY2024 · HL

Optimization of electromechanical monitoring of engineered heart tissues

$457,365
Elizabeth M McNally · Northwestern University At Chicago · R33 · FY2024 · HL

Role of myostatin in cardiac hypertrophy and failure

$457,364
Massachusetts General Hospital · R01 · FY2005 · HL

Kidney Injury Molecule-1 in Epithelial Repair

$457,318
Joseph Vincent Bonventre · Brigham And Women'S Hospital · R01 · FY2019 · DK

Kidney Injury Molecule-1 in Epithelial Repair

$457,318
Joseph Vincent Bonventre · Brigham And Women'S Hospital · R01 · FY2017 · DK

Kidney Injury Molecule-1 in Epithelial Repair

$457,318
Joseph Vincent Bonventre · Brigham And Women'S Hospital · R01 · FY2020 · DK

The effect of electronic cigarettes on young versus old normal hearts and pathologic hearts

$457,310
Robert A Kloner · Huntington Medical Research Institutes · R01 · FY2020 · HL

THE PRESENT APPLICATION SEEKS TO STUDY THE LONG-TERM CONSEQUENCES OF COSMIC RADIATION EXPOSURE. SPACE TRAVEL INCREASES SOLAR PARTICLE RADIATION EXPOSURE WHICH IS SIGNIFICANTLY ELEVATED ONCE TRAVEL MOVES BEYOND LOW EARTH ORBIT. THIS INCLUDES A COMBINATION OF HIGH ENERGY PROTONS AND HEAVY IONS SUCH AS 56FE 28SI AND 16O. THE ADVERSE RISK OF RADIATION-INDUCED HEART FAILURE IS ALSO EVIDENT AS A LONG-TERM CONSEQUENCE OF ACCIDENTAL RADIATION EXPOSURE OR CANCER TREATMENT. SURVIVORS OF CANCER ARE ALSO AT RISK FOR OTHER ADVERSE HEALTH OUTCOMES INCLUDING ABNORMAL PULMONARY FUNCTION ENDOCRINE DISORDERS NEUROCOGNITIVE IMPAIRMENT AND OSTEOPOROSIS. ALL OF THESE ORGAN SYSTEMS ARE CHARACTERIZED BY A LOW TURNOVER OF CELLS AND IT IS LIKELY THAT AN ACCELERATED CELL DEATH AND/OR THE FAILURE OF REGENERATION BY THE PLURIPOTENT CELLS MAY BE THE UNDERLYING CAUSE OF ORGAN FAILURE. ALTHOUGH THIS APPLICATION WILL FOCUS ON HEART FAILURE OUR FINDINGS WILL HAVE IMPLICATIONS FOR MANY ORGAN SYSTEMS. OUR PRELIMINARY STUDIES OBSERVED DEGRADATION OF CARDIOVASCULAR FUNCTION IN A MODEL OF COSMIC RADIATION (HIGH-LET) EXPOSURE. MICE WERE EXPOSED TO 50 CGY (FE56) AT 3 MONTHS OF AGE AND THEN STUDIED AT 24 MONTHS OF AGE. DEGRADATION OF CARDIAC FUNCTION WAS EVIDENT BY SIGNIFICANT DECREASES IN MYOCARDIAL CONTRACTILITY AND RELAXATION. CONCOMITANT WITH THIS WERE SIGNIFICANT CHANGES IN MITOCHONDRIAL AND STEM/PROGENITOR CELL FUNCTION. IN THE PRESENT GROUND BASED APPLICATION WE PROPOSE TO EVALUATE THE IMPACT OF HIGH-LET; TO IDENTIFY THE PATHWAY TO HEART FAILURE AND EVALUATE THREE DISTINCT PROTOCOLS AS POTENTIAL COUNTERMEASURES. HYPOTHESIS: RADIATION-INDUCED CARDIOMYOPATHY IS THE RESULT OF A CELL SPECIFIC FAILURE. CELL SPECIFIC FAILURE IS THE RESULT OF AN INABILITY TO MAINTAIN THE BALANCE OF REPAIR/REPLACEMENT THAT ULTIMATELY LEADS TO ACTIVATION OF DEGRADATION PATHWAYS AND ACCELERATED CELL LOSS. THIS STUDY WILL UTILIZE BOTH CULTURED CELLS AS WELL AS SWISS WEBSTER MICE TO BE RANDOMLY ASSIGNED TO CONTROL OR SINGLE HEAVY ION HIGH- LET EXPOSURE GROUPS. PHASE 1 WILL USE SINGLE EXPOSURES TO HIGH-LET EXPOSURE OF 1) 56FE (50 CGY) OR 2) PROTON (200 CGY). PHASE 2 WILL UTILIZE A MIXED FIELD EXPOSURE FOLLOWING THE GUIDELINES OF THE HERO ANNOUNCEMENT (80JSC017N0001-BPBA; APPENDIX C). ALL EXPOSURES WILL BE PERFORMED AT THE NASA SPACE RADIATION LABORATORY AT BROOKHAVEN NATIONAL LABORATORY. WE PLAN TO STUDY THREE DISTINCT COUNTERMEASURES INCLUDING 1) MITOTEMPO 2) METFORMIN 3) LISINOPRIL. MITOTEMPO IS AN ANTIOXIDANT THAT PARTITIONS TO THE MITOCHONDRIA. METFORMIN AN ANTIDIABETIC MAINSTAY HAS MORE RECENTLY BEEN SHOWN TO HAVE SIGNIFICANT ANTICANCER PROPERTIES. LISINOPRIL AN INHIBITOR OF THE ANGIOTENSIN SYSTEM HAS BEEN SHOWN TO MITIGATE RADIATION INJURIES FROM LOW-LET EXPOSURE. EVALUATIONS WILL BE MADE ON SEVERAL LEVELS TO INCLUDE 1) DETERMINATION OF CARDIOVASCULAR FUNCTION 2) IDENTIFICATION OF CELL SPECIFIC FAILURE 3) INTRACELLULAR DETERMINATION OF DAMAGE FOCUSING ON GENOMIC AND MITOCHONDRIAL DNA DAMAGE. CELL FAILURE IN TERMS OF METABOLIC FAILURE ACCELERATED SENESCENCE AS WELL AS DNA DAMAGE WILL BE DETERMINED. A NUMBER OF INVESTIGATIONS IN SPACE BIOLOGY ARE CURRENTLY ONGOING AT NYMC AND COLLABORATIONS AND SHARING OF RESOURCES WILL ENHANCE THE RESEARCH PRODUCTS DERIVED FROM FUNDING THIS APPLICATION. RADIATION INDUCED CARDIOMYOPATHIES ARE OBSERVED MONTHS OR YEARS AFTER EXPOSURE. THE PRESENT APPLICATION WILL SEPARATE THE INSULT FROM THE CONSEQUENCES. OUR PRELIMINARY FINDINGS DEMONSTRATED SIGNIFICANT DEGRADATION OF CARDIAC FUNCTION SIMILAR TO THE ACCELERATED AGING PHENOTYPE OBSERVED WITH CHEMOTHERAPY. IT MAY NOT BE RELEVANT THAT ANY SINGLE CELL DIES BUT THAT THE BALANCE OF CELL DEATH AND CELL REPLACEMENT IS UPSET. ALTHOUGH FOCUSED ON THE HEART THESE INVESTIGATIONS WILL HAVE WIDESPREAD APPLICATION TO OTHER ORGAN SYSTEMS AND COLLECTIVELY SERVE THE LONG TERM HEALTH AND WELL BEING OF FLIGHT CREWS.

$457,307
New York Medical College · · FY2020 · National Aeronautics and Space Administration

The Role of Mitochondrial VDACs in Apoptosis

$457,183
William James Craigen · Baylor College Of Medicine · R01 · FY2010 · NS

Environmental Toxicants, Race, and Cardiovascular Disease Risk in Children

$457,163
Brooks B Gump · Syracuse University · R01 · FY2014 · ES

Intrinsic stiffness of aortic vascular smooth muscle cell in the development of h

$457,144
Hongyu Qiu · Loma Linda University · R01 · FY2014 · HL

ECONOMICS AND QUALITY OF LIFE IN THE OCCLUDED ARTERY TRI

$457,129
Duke University · U01 · FY2003 · HL

ELECTROPHYSIOLOGY OF CARDIAC DYSSYNCHRONY AND CRT

$457,106
Gordon Frank Tomaselli · Johns Hopkins University · P01 · FY2008 · HL

Angiogenesis and Mechanisms of Exercise Training in PAD

$457,100
Brian H Annex · University Of Virginia · R01 · FY2007 · HL

Optimized Electrical Block of Peripheral Nerves

$457,076
Warren M. Grill · Duke University · R01 · FY2023 · NS

Small molecule screening for novel regulators of cardiac Ca2+ kinetics and rhythm

$457,016
Atsushi Nakano · University Of California Los Angeles · R56 · FY2015 · HL

Optimized Signal Processing of Fetal MCG

$456,901
Ronald T Wakai · University Of Wisconsin-Madison · R01 · FY2011 · HL

Cultivating novel treatments for obesity-related respiratory disease by uncovering neuronal etiology

$456,882
Deanna Marie Arble · Marquette University · R15 · FY2023 · HL

RGS14 Regulation of Hormone-sensitive NPT2A-mediated Phosphate Transport

$456,863
John R Hepler · Emory University · R01 · FY2023 · GM

Developing natural compound emodin as a therapy for alcoholic cardiomyopathy

$456,840
Wayne E Carver · Acepre, Llc · UT1 · FY2023 · AA

Utilization of Quantitative ECG Measures during Cardiopulmonary Resuscitation

$456,822
James John Menegazzi · University Of Pittsburgh At Pittsburgh · R01 · FY2014 · HL

Endothelial Sphingolipid Synthesis and Tissue Inflammatory Response

$456,803
Annarita Di Lorenzo · Weill Medical Coll Of Cornell Univ · R01 · FY2023 · HL

Endothelial Sphingolipid Synthesis and Tissue Inflammatory Response

$456,803
Annarita Di Lorenzo · Weill Medical Coll Of Cornell Univ · R01 · FY2021 · HL