Abstract
Heart failure is a common, lethal condition whose pathogenesis is poorly understood. Recent studies have identified low levels of myocyte apoptosis (80-250 myocytes per 10(5) nuclei) in failing human hearts. It remains unclear, however, whether this cell death is a coincidental finding, a protective process, or a causal component in pathogenesis. Using transgenic mice that express a conditionally active caspase exclusively in the myocardium, we demonstrate that very low levels of myocyte apoptosis (23 myocytes per 10(5) nuclei, compared with 1.5 myocytes per 10(5) nuclei in controls) are sufficient to cause a lethal, dilated cardiomyopathy. Interestingly, these levels are four- to tenfold lower than those observed in failing human hearts. Conversely, inhibition of cardiac myocyte death in this murine model largely prevents the development of cardiac dilation and contractile dysfunction, the hallmarks of heart failure. To our knowledge, these data provide the first direct evidence that myocyte apoptosis may be a causal mechanism of heart failure, and they suggest that inhibition of this cell death process may constitute the basis for novel therapies.
MeSH Terms
Animals
Apoptosis
Caspase 8
Caspase 9
Caspases/genetics
Dimerization
Disease Models, Animal
Disease Progression
Enzyme Activation/drug effects
Enzyme Activators/pharmacology
Heart Failure/etiology,metabolism,pathology
Humans
Mice
Mice, Inbred C57BL
Mice, Transgenic
Myocardium/metabolism,pathology
Myocytes, Cardiac/drug effects,metabolism,pathology
Organ Specificity/genetics
Recombinant Fusion Proteins/biosynthesis,drug effects,genetics
Tacrolimus/analogs & derivatives,pharmacology
Tacrolimus Binding Proteins/genetics
Transgenes
Chemicals
Enzyme Activators
FK 1012
Recombinant Fusion Proteins
CASP8 protein, human
CASP9 protein, human
Casp8 protein, mouse
Casp9 protein, mouse
Caspase 8
Caspase 9
Caspases
Tacrolimus Binding Proteins
Tacrolimus
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Wencker Detlef
Department of Medicine (Molecular Cardiology), Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Chandra Madhulika
Nguyen Khanh
Miao Wenfeng
Garantziotis Stavros
Factor Stephen M
Shirani Jamshid
Armstrong Robert C
Kitsis Richard N
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