Apoptotic versus autophagic cell death in heart failure
M W Knaapen1, M J Davies, M De Bie
1HistoGeneX (Histological Gene Expression Systems), Antwerp, Belgium.
Objective:
Progressive loss of cardiomyocytes is one of the most important pathogenic characteristics of heart failure. Apoptosis may be an important mode of cell death in heart failure but it must be demonstrated by multiple criteria and not just TUNEL staining alone. Previously, we and others have demonstrated that besides apoptosis other phenomena like active gene transcription can result in TUNEL positivity. Moreover, other types of cell death that are caspase-independent could be important in heart failure. This study examined the hypothesis whether TUNEL labeling parallels caspase activation.
Methods:
Cardiac tissue of patients in the terminal stage of heart failure as a consequence of ischaemic cardiomyopathy (ICM) or dilated cardiomyopathy (DCM) were studied. Embryonic mice hearts were used for positive control for detection of the classical apoptosis.
Results:
In mice embryonic hearts we could clearly find apoptotic cell death detected by TUNEL labeling and immunohistochemistry for activated caspase-3. In heart failure, TUNEL-positive cardiomyocytes were negative for active caspase-3 but showed signs of active gene transcription (SC-35). However, autophagic cell death could be found in 0.3% of the cardiomyocytes. Autophagic cell death was demonstrated by granular cytoplasmic ubiquitin inclusions, an established marker of autophagocytosis in neurons. Interestingly, these autophagic cardiomyocytes were TUNEL and activated caspase-3 negative but were also negative for C9, a marker for necrosis. Western blot analysis confirmed that in cardiomyopathies no cleavage of caspase-3 and caspase-7 occurred.
Conclusion:
The present study demonstrates two fundamentally different situations of cell death in cardiac tissue. In embryonic mice, cardiomyocytes undergo caspase-dependent cell death. However, cardiomyocytes in heart failure show caspase-independent autophagic cell death rather than apoptotic cell death.
Insights
Heart failure involves cardiomyocyte death. This study shows heart failure cardiomyocytes undergo caspase-independent autophagic cell death, unlike embryonic heart cells which exhibit apoptosis.
Area of Science:
- Cardiovascular Biology
- Cell Death Mechanisms
- Pathophysiology of Heart Failure
Background:
- Progressive cardiomyocyte loss is a hallmark of heart failure.
- Apoptosis is a suspected cell death pathway, but TUNEL staining alone is insufficient proof.
- Caspase-independent cell death may also contribute to heart failure pathogenesis.
Purpose of the Study:
- To investigate whether TUNEL labeling in cardiomyocytes correlates with caspase activation in heart failure.
- To differentiate between apoptotic and other cell death mechanisms in failing hearts.
Main Methods:
- Analysis of cardiac tissue from patients with end-stage ischaemic cardiomyopathy (ICM) and dilated cardiomyopathy (DCM).
- Use of embryonic mouse hearts as a positive control for apoptosis.
- Immunohistochemistry for active caspase-3, SC-35 (gene transcription marker), and C9 (necrosis marker).
- Western blot analysis for caspase-3 and caspase-7 cleavage.
Main Results:
- Embryonic mouse hearts showed classical apoptosis with TUNEL positivity and active caspase-3.
- In heart failure, TUNEL-positive cardiomyocytes lacked active caspase-3 but exhibited active gene transcription.
- Autophagic cell death was identified in a small percentage of cardiomyocytes, characterized by cytoplasmic ubiquitin inclusions.
- These autophagic cells were negative for TUNEL, active caspase-3, and C9, with no caspase-3 or caspase-7 cleavage observed in cardiomyopathies.
Conclusions:
- Cardiomyocytes in embryonic hearts undergo caspase-dependent apoptosis.
- Cardiomyocytes in heart failure exhibit caspase-independent autophagic cell death, not apoptosis.
- Distinguishing cell death mechanisms is crucial for understanding heart failure progression.
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