Key result
Dysregulated cell death interactomes contribute to cardiomyocyte loss and adverse remodeling in chronic HF.
Why the study?
While adverse cardiac remodeling and cardiomyocyte loss are central to chronic heart failure pathogenesis, the precise mechanisms driving this cellular demise remain incompletely understood.
This review highlights the complex interplay of programmed cell death pathways in chronic heart failure, identifying potential therapeutic targets within the 'cell death interactome.'
May guide preclinical target selection in chronic heart failure; leaves open clinical validation of cell death interactome modulation.
Chronic heart failure (CHF) is a leading cause of morbidity and mortality, characterized by the heart's progressive inability to maintain adequate circulation. While adverse cardiac remodeling, encompassing cardiomyocyte hypertrophy, fibrosis, and ultimately, cardiomyocyte loss, is central to CHF pathogenesis, the precise mechanisms driving this cellular demise remain incompletely understood. Dysregulation of programmed cell death (PCD) pathways plays a critical role. Beyond apoptosis, the canonical form of PCD, diverse modalities including necroptosis, mPTP-dependent necrosis, pyroptosis, ferroptosis, cuproptosis, disulfidptosis, and autophagy-dependent cell death contribute to cardiomyocyte loss and adverse remodeling, exacerbating CHF progression. These pathways are intricately interconnected, forming a complex "cell death interactome" in which activation of one death program can influence others, shaping the balance between adaptive and maladaptive responses. This review first provides core definitions for each PCD modality, followed by an analysis of their spatiotemporal dynamics, etiology-specific activation patterns, and crosstalk within the interactome. By integrating molecular, pathological, and preclinical evidence, we delineate the key regulatory nodes of the cell death interactome in CHF, highlight promising therapeutic targets, and ultimately accelerate the translation of these mechanistic findings into clinical interventions.
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Chen et al. (2026) conducted a review in Chronic heart failure (CHF). Dysregulation of interconnected programmed cell death pathways forms a complex cell death interactome that contributes to cardiomyocyte loss and adverse remodeling in chronic heart failure.
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