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Published on: July 10, 2019
Regulated cell death pathways in cardiomyopathy
Shu-Yuan Sheng1, Jia-Min Li1, Xin-Yang Hu1
1Department of Cardiology, Zhejiang University School of Medicine, Second Affiliated Hospital, Hangzhou, 310009, China.
Insights
Regulated cell death (RCD) pathways like apoptosis and ferroptosis are crucial in heart disease. Understanding these mechanisms in cardiomyocytes is vital for developing new therapies for cardiomyopathies.
Area of Science:
- Cardiovascular Biology
- Cell Death Mechanisms
- Pathogenesis of Cardiomyopathies
Background:
- Heart disease is a major global health concern, with cardiomyopathies leading to significant mortality.
- Cardiomyocyte death is a key factor in cardiac dysfunction and the progression of heart failure.
- Limited regenerative capacity of cardiomyocytes exacerbates damage from various insults.
Purpose of the Study:
- To review the latest research on regulated cell death (RCD) pathways in cardiomyocytes.
- To elucidate the role of RCD in the pathogenesis of various cardiomyopathies.
- To explore therapeutic strategies targeting RCD pathways for heart disease.
Main Methods:
- Literature review focusing on RCD pathways (apoptosis, necroptosis, ferroptosis, autophagy, pyroptosis).
- Analysis of the interplay between different RCD forms in stressed myocardium.
- Examination of current and potential therapeutic interventions targeting RCD.
Main Results:
- Multiple RCD pathways, including apoptosis, ferroptosis, autophagy, pyroptosis, and necroptosis, are implicated in cardiomyopathy.
- Aberrant RCD is a hallmark of various cardiomyopathies, such as dilated, diabetic, sepsis-induced, and drug-induced forms.
- Significant crosstalk exists among RCD pathways in pathological conditions of the heart.
Conclusions:
- Understanding RCD mechanisms in cardiomyocytes is essential for comprehending cardiomyopathy pathogenesis.
- Targeting specific RCD pathways offers promising therapeutic avenues for treating heart disease.
- Further research into RCD crosstalk may reveal novel treatment strategies for cardiomyopathies.
Abstract:
Heart disease is a worldwide health menace. Both intractable primary and secondary cardiomyopathies contribute to malignant cardiac dysfunction and mortality. One of the key cellular processes associated with cardiomyopathy is cardiomyocyte death. Cardiomyocytes are terminally differentiated cells with very limited regenerative capacity. Various insults can lead to irreversible damage of cardiomyocytes, contributing to progression of cardiac dysfunction. Accumulating evidence indicates that majority of cardiomyocyte death is executed by regulating molecular pathways, including apoptosis, ferroptosis, autophagy, pyroptosis, and necroptosis. Importantly, these forms of regulated cell death (RCD) are cardinal features in the pathogenesis of various cardiomyopathies, including dilated cardiomyopathy, diabetic cardiomyopathy, sepsis-induced cardiomyopathy, and drug-induced cardiomyopathy. The relevance between abnormity of RCD with adverse outcome of cardiomyopathy has been unequivocally evident. Therefore, there is an urgent need to uncover the molecular and cellular mechanisms for RCD in order to better understand the pathogenesis of cardiomyopathies. In this review, we summarize the latest progress from studies on RCD pathways in cardiomyocytes in context of the pathogenesis of cardiomyopathies, with particular emphasis on apoptosis, necroptosis, ferroptosis, autophagy, and pyroptosis. We also elaborate the crosstalk among various forms of RCD in pathologically stressed myocardium and the prospects of therapeutic applications targeted to various cell death pathways.
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