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April 17, 1997New England Journal of Medicine1,686 citationsOpen Access

Apoptosis in the Failing Human Heart

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GOG OlivettiHeart Failure & TransplantRARakesh AbbiLutheran Medical CenterFQFederico QuainiCardio-Oncology

Key Result

Intractable congestive heart failure is characterized by a 232-fold increase in myocyte apoptosis compared to normal hearts, despite a 1.8-fold increase in protective BCL2 expression.

Structured PICO

P
Population
Myocardial samples from 36 patients with intractable congestive heart failure who underwent cardiac transplantation, 3 patients who died soon after myocardial infarction, and 11 normal hearts used as controls (total n=50).
C
Comparator
Samples from 11 normal hearts
O
Outcome
Magnitude of myocyte apoptosis (evaluated histochemically, biochemically, and by confocal microscopy) and expression of BCL2 and BAXsurrogate

Programmed cell death (apoptosis) of myocytes is significantly increased in the decompensated human heart despite enhanced expression of the protective BCL2 gene, suggesting it contributes to the progression of cardiac dysfunction.

Abstract

BACKGROUND: Loss of myocytes is an important mechanism in the development of cardiac failure of either ischemic or nonischemic origin. However, whether programmed cell death (apoptosis) is implicated in the terminal stages of heart failure is not known. We therefore studied the magnitude of myocyte apoptosis in patients with intractable congestive heart failure. METHODS: Myocardial samples were obtained from the hearts of 36 patients who underwent cardiac transplantation and from the hearts of 3 patients who died soon after myocardial infarction. Samples from 11 normal hearts were used as controls. Apoptosis was evaluated histochemically, biochemically, and by a combination of histochemical analysis and confocal microscopy. The expression of two proto-oncogenes that influence apoptosis, BCL2 and BAX, was also determined. RESULTS: Heart failure was characterized morphologically by a 232-fold increase in myocyte apoptosis and biochemically by DNA laddering (an indicator of apoptosis). The histochemical demonstration of DNA-strand breaks in myocyte nuclei was coupled with the documentation of chromatin condensation and fragmentation by confocal microscopy. All these findings reflect apoptosis of myocytes. The percentage of myocytes labeled with BCL2 (which protects cells against apoptosis) was 1.8 times as high in the hearts of patients with cardiac failure as in the normal hearts, whereas labeling with BAX (which promotes apoptosis) remained constant. The near doubling of the expression of BCL2 in the cardiac tissue of patients with heart failure was confirmed by Western blotting. CONCLUSIONS: Programmed death of myocytes occurs in the decompensated human heart in spite of the enhanced expression of BCL2; this phenomenon may contribute to the progression of cardiac dysfunction.

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Cite This Study

Olivetti et al. (1997) studied this question. Intractable congestive heart failure is characterized by a 232-fold increase in myocyte apoptosis compared to normal hearts, despite a 1.8-fold increase in protective BCL2 expression.

synapsesocial.com/papers/6a09093b280384dc1bd38c70https://doi.org/10.1056/nejm199704173361603
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Apoptosis in Myocytes in End-Stage Heart Failure1996 · 1,450 citations
  2. 2Cardiomyocyte apoptosis and progression of heart failure to transplantation1999 · 211 citations
  3. 3Myocyte apoptosis in heart failure2005 · 374 citations
  4. 4A mechanistic role for cardiac myocyte apoptosis in heart failure2003 · 746 citations
  5. 5Apoptosis in heart failure: Release of cytochrome <i>c</i> from mitochondria and activation of caspase-3 in human cardiomyopathy1999 · 587 citations