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Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation
Published on: May 31, 2016
Comprehensive Review of Mechanisms and Translational Perspectives on Programmed Cell Death in Vascular Calcification
Yiyang Cao1, Yulong Cao1, Jiaheng Liu1
1The Queen Mary School, Jiangxi Medical College, Nanchang University, 999 Xuefu Road, Nanchang 330031, China.
Abstract:
Programmed cell death (PCD), a regulated cell death (RCD) subtype essential for physiological homeostasis, encompasses distinct mechanisms including apoptosis, necroptosis, autophagy, ferroptosis, cuproptosis, and pyroptosis. This evolutionarily conserved process critically regulates disease pathogenesis across degenerative disorders, malignancies, fungal infections, and vascular calcification (VC). VC manifests as pathological calcium deposition in cardiovascular tissues, impairing vascular elasticity and hemodynamics. These structural alterations elevate risks of atherosclerotic events, cerebrovascular accidents, and peripheral vascular dysfunction, while concomitantly inducing vital organ hypoperfusion and cardiac overload that predispose individuals to myocardial ischemia, left ventricular hypertrophy, and heart failure. Despite advances in delineating associated signaling networks, the molecular etiology of VC remains elusive, and effective therapeutic interventions are currently lacking. While systematically examining the pathophysiological contributions of both established and novel PCD mechanisms to VC progression, this review incorporates a discussion of cuproptosis as a novel form of PCD, which may serve as a target for atherosclerosis treatment. The inclusion of cuproptosis, alongside other PCD modalities, allows for a more integrated and updated perspective on the complex regulatory networks governing VC. Our objective is to synthesize the current understanding of how these diverse PCD pathways, both classical and emerging, collectively contribute to the disease pathogenesis and to explore the broader therapeutic potential of targeting PCD in VC.
Insights
Programmed cell death (PCD) pathways are crucial in vascular calcification (VC). Targeting novel PCD mechanisms like cuproptosis offers potential therapeutic strategies for VC and atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Cell Death Mechanisms
- Pathogenesis of Vascular Calcification
Background:
- Programmed cell death (PCD), a regulated cell death (RCD) subtype, is vital for homeostasis and implicated in various diseases.
- Vascular calcification (VC) involves pathological calcium deposition, leading to impaired vascular function and increased cardiovascular event risk.
- The molecular basis of VC is not fully understood, and effective treatments are lacking.
Purpose of the Study:
- To review the roles of diverse PCD mechanisms in VC pathogenesis.
- To explore cuproptosis as a potential therapeutic target for atherosclerosis and VC.
- To synthesize current knowledge on PCD pathways in VC and their therapeutic potential.
Main Methods:
- Systematic review of established and emerging PCD mechanisms in VC.
- Analysis of signaling networks associated with VC.
- Discussion of cuproptosis as a novel PCD modality.
Main Results:
- PCD pathways, including apoptosis, necroptosis, autophagy, ferroptosis, cuproptosis, and pyroptosis, contribute to VC.
- Cuproptosis is identified as a novel PCD mechanism with potential as an atherosclerosis treatment target.
- Diverse PCD pathways collectively influence VC pathogenesis.
Conclusions:
- Understanding the multifaceted roles of PCD in VC is essential for developing new therapies.
- Targeting PCD, particularly novel pathways like cuproptosis, holds promise for managing VC and related cardiovascular diseases.
- Further research into PCD mechanisms can elucidate VC etiology and guide therapeutic interventions.
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