Molecular mechanisms in chronically stunned myocardium

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Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
Project Description:
The most common form of heart disease is myocardial ischemia, which is characterized by an insufficient supply of blood, substrates and oxygen to the heart due to coronary artery obstruction. If not treated, irreversible damage ensues in the form of myocardial infarction (heart attack). The overall aim of the Project is to identify mechanisms which are fundamental to the understanding of ischemic heart disease, which will be accomplished by utilizing an integrative approach including cellular and molecular studies as well as integrative whole animal physiology. This Project is based on a model of repetitive stunning in the swine, developed in the current funding period, that reproduces the chronic myocardial dysfunction with maintained viability that characterizes the human hibernating myocardium. We show in the Preliminary Data that the well defined cardioprotective mechanisms attributed to the first and second window of preconditioning are not activated in the model of repetitive stunning. Rather, in this model, cardiac protection results from the activation of a different gene/protein program of cell survival, and also from the regulation of specific intracellular pathways, including autophagy. Accordingly, this may represent a third window of protection. The goal of this proposal is to better define the mechanisms of cardioprotection activated in this model of repetitive stunning, to determine their durability, to compare those mechanisms with those activated during preconditioning, and to determine whether the repetition of ischemia extends this cardioprotection to the remote, normal myocardium. Importantly, the swine model of repetitive stunning resembles pathophysiology in humans more closely than rodents, lacks preformed coronary collateral vessels, and the heart is sufficiently large to provide measurements of regional function, blood flow, biochemistry, molecular biology and pathology from the same animals in both the ischemic zone and a contralateral, remote, non-ischemic zone. This project is tied closely to the other projects and cores, as well as to the major themes of the Program Project: 1)Mechanisms of myocardial ischemia and reperfusion;2)Molecular signaling; 3)Myocardial protection and cell survival vs. cell death;4)lntegrative cardiovascular research. This project is linked closely to Project 1, which also studies the chronically instrumented swine model, but in Project 1 the model is one of regional cardiac denervation. Indeed, several of the aims are shared by Projects 1 and 2, using two different models. It will be critical to compare the cellular/molecular alterations in Projects 1 and 2 to derive an understanding of the differences between the second and potentially, third window of protection. Project 2 interacts with Project 3 in terms of molecular signaling and mechanisms of apoptosis, and with Project 4 particularly related to H11 kinase and its role in the protection afforded by chronic, repetitive stunning. Project 2 also utilizes all of the Cores.
 
Project Terms:
20S Catalytic Proteasome 20S Core Proteasome 20S Proteasome 20S Proteosome APF-1 ATP-Dependent Proteolysis Factor 1 Address Animal Model Animal Models and Related Studies Animals Apoptosis Apoptosis Pathway Arterial Obstruction Arterial Occlusion Artery Obstruction Autophagocytosis Bio-Informatics Biochemistry Bioinformatics Biometrics Biometry Biometry and Biostatistics Biostatistics Blood flow C 1 Esterase C1 Esterase C1 s C1s Cardiac Cardiac Diseases Cardiac Disorders Cardiac artery Cardiac infarction Cardiovascular Cardiovascular Body System Cardiovascular system Cardiovascular system (all sites) Cell Communication and Signaling Cell Death Cell Death, Programmed Cell Signaling Cell Survival Cell Viability Cellular Expansion Cellular Growth Chemistry, Biological Chronic Complement 1 Esterase Complement 1s Complement component C1s Conscious Consciousness Contralateral Coronary Coronary Arteriosclerosis Coronary Artery Disease Coronary Artery Disorder Coronary Artery Stenosis Coronary Atherosclerosis Coronary Stenosis Coronary artery DNA Molecular Biology Data Denervation Dysfunction EC 2.7 Endogenous Nitrate Vasodilator Endothelium-Derived Relaxing Factor Family suidae Foundations Functional disorder Funding Gene Proteins Genomics Goals HMG-20 HTRPY Heart Heart Diseases Heart artery High Mobility Protein 20 Histopathology Human Human, General Hyperplasia Hyperplastic Hypertrophy Infarction Intervention Intervention Strategies Intracellular Communication and Signaling Ischemia Ischemic Heart Ischemic Heart Disease Ischemic Preconditioning Ischemic myocardium Kinases Link Macropain Macroxyproteinase Mammalia Mammals Mammals, General Mammals, Rodents Man (Taxonomy) Man, Modern Measurement Mediating Metabolic Modeling Molecular Molecular Biology Mononitrogen Monoxide Mother Cells Multicatalytic Proteinase Muscle Cells Muscle Cells, Mature Muscle, Cardiac Muscle, Heart Myocardial Myocardial Infarct Myocardial Infarction Myocardial Ischemia Myocardial depression Myocardial dysfunction Myocardium Myocytes Nitric Oxide Nitric Oxide, Endothelium-Derived Nitrogen Monoxide Nitrogen Protoxide Nitrogen oxide O element O2 element Organ System, Cardiovascular Oxygen Pathology Pathway interactions Patients Pattern Phosphorylation Phosphotransferases Physiology Physiopathology Pigs Preconditionings, Ischemic Preparation Process Progenitor Cells Programs (PT) Programs [Publication Type] Prosome Proteasome Proteasome Endopeptidase Complex Protein Cleavage Protein Degradation, Metabolic Protein Degradation, Regulatory Protein Gene Products Protein Phosphorylation Protein Turnover Proteins Proteolysis Proteomics Proteosome R01 Mechanism R01 Program RPG Regulation Reperfusion Therapy Research Research Grants Research Project Grants Research Projects Research Projects, R-Series Rodent Rodent Model Rodentia Rodentias Role Signal Transduction Signal Transduction Systems Signaling Stem cells Stunned Myocardium Suidae Swine System System, LOINC Axis 4 Thick Thickness Transphosphorylases Ubiquitin Vascular blood supply Vascular, Heart animal care artery occlusion autophagy base biological signal transduction blood supply cardiac infarct cardiac metabolism cardiac muscle cell growth circulatory system coronary attack coronary infarct coronary infarction endothelial cell derived relaxing factor experiment experimental research experimental study gene product heart attack heart disorder heart infarct heart infarction heart ischemia heart metabolism heart muscle infarct instrument interventional strategy model organism multicatalytic endopeptidase complex myocardial ischemia/hypoxia myocardium ischemia necrocytosis pathophysiology pathway porcine preconditioning programs protein degradation reperfusion research study social role statistics/biometry suid vascular supply
Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
Project Categories:
Natural Sciences > Aging Diseases and Pathology > Cardiovascular and cerebrovascular diseases
 
Other Information:
Fiscal Year: 2010
Project Start Date: 1 September 2010
Project End Date: 31 August 2011
Administering Institute Or Center: HL
 
Project Funding Information:
Total Funding: $342,976
Year Funding Organization Total Funding, $
2010 NATIONAL HEART, LUNG, AND BLOOD INSTITUTE $342,976
Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
Project_number Title Year FY Total Cost
There are no results for this project in database.
Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
Project number Project title Organization FY Funding Organization FY Total Cost
1T32HL069752-01A2Integrative Mechanisms in Cardiovascular DiseaseUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2004NATIONAL HEART
$229,351
5R01HL033107-21Cardiovascular Control in Normal and Disease StatesUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2004NATIONAL HEART
$650,750
5P01HL059139-07Myocardial Hypertrophy and Heart FailureUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2004NATIONAL HEART
$1,597,506
5R01HL033107-20Cardiovascular Control in Normal and Disease StatesUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2003NATIONAL HEART
$635,625
2P01HL059139-06Myocardial Hypertrophy and Heart FailureUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2003NATIONAL HEART
$1,451,551
2R01HL033107-19Cardiovascular Control in Normal and Disease StatesUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2002NATIONAL HEART
$617,111
5P01HL069020-02-0002Mechanisms underlying short term, chronic and true hiberUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2002NATIONAL HEART
$296,386
5R37HL033107-18CARDIOVASCULAR CONTROL IN NORMAL AND DISEASE STATESUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2001NATIONAL HEART
$574,827
5P01HL059139-05MYCARDIAL HYPERTOPHY AND HEART FAILUREUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2001NATIONAL HEART
$1,780,080
7R37HL033107-17CARDIOVASCULAR CONTROL IN NORMAL AND DISEASE STATESUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2000NATIONAL HEART
$624,461
7R01HL033065-15MYOCARDIAL ISCHEMIA AND CORONARY ARTERY REPERFUSIONUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2000NATIONAL HEART
$375,717
7P01HL059139-04MYCARDIAL HYPERTOPHY AND HEART FAILUREUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2000NATIONAL HEART
$1,746,064
5P01HL069020-10-6Molecular Mechanisms in Chronically Stunned MyocardiumUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2010NATIONAL HEART
$342,976
5P01AG027211-04Longevity and Stress ResistanceUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2010NATIONAL INSTITUTE ON AGING
$2,054,477
1R01HL102472-01Intrinsic Vascular Smooth Muscle Cell StiffnessUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2010NATIONAL HEART
$491,296
1P20HL101420-01AC5 Inhibitor Treatment for Heart FailureUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2010NATIONAL HEART
$779,111
5P01HL059139-08Myocardial Hypertrophy and Heart FailureUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2005NATIONAL HEART
$1,971,977
5P01HL069020-05-0002Mechanisms underlying short term, chronic and true hiberUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2005NATIONAL HEART
$322,754
5R01HL033107-22Cardiovascular Control in Normal and Disease StatesUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2005NATIONAL HEART
$665,935
5T32HL069752-02Integrative Mechanisms in Cardiovascular DiseaseUNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL2005NATIONAL HEART
$458,703
Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
Project number Project title Principal investigator
There are no any related projects.
Project Title: Molecular mechanisms in chronically stunned myocardium
Principal Investigators (PI): VATNER STEPHEN F
Project Number: 5P01HL069020-10-6
Parent Project: 5P01HL069020-10
Organization: UNIV OF MED/DENT OF NJ-NJ MEDICAL SCHOOL
 
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