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Published on: February 20, 2019
Pathological mechanisms and research progress of multilevel intervention therapy for coronary heart disease
Zhengyu Tu1,2, Yuxin Wei1,2, Yuanpeng Liao1,2
1Department of Cardiology, The First Affiliated Hospital of Yangtze University, Jingzhou, China.
Insights
Coronary heart disease (CHD) involves complex interactions of metabolism, inflammation, and immunity, not just lipid deposition. Understanding this network offers new avenues for precise prevention and treatment of atherosclerosis.
Area of Science:
- Cardiovascular Medicine
- Immunology
- Metabolic Disorders
Background:
- Coronary heart disease (CHD) is a chronic condition primarily caused by coronary atherosclerosis.
- Endothelial dysfunction is an early key event in CHD development.
- CHD progression involves a systemic process driven by metabolic disorders, inflammation, and immune imbalance.
Purpose of the Study:
- To systematically review CHD pathological mechanisms, focusing on metabolism, immune regulation, and plaque instability.
- To explore the potential of multilevel and systematic interventions for precise CHD prevention and treatment.
- To provide a theoretical basis for future translational research and personalized CHD management.
Main Methods:
- Narrative review of recent research on CHD pathogenesis.
- Analysis of the interplay between metabolism, inflammation, and immunity in atherosclerosis.
- Discussion of traditional therapeutic limitations and future intervention strategies.
Main Results:
- CHD pathogenesis is a complex systemic process involving lipid metabolism, chronic inflammation, and immune imbalance.
- A positive feedback loop exists between immune cell metabolism, macrophage polarization, inflammasome activation, and oxidative stress.
- Traditional therapies have limitations in long-term risk control and disease reversal.
Conclusions:
- Multilevel and systematic intervention strategies hold significant potential for precise CHD prevention and treatment.
- A deeper understanding of the metabolism-inflammation-immunity network is crucial for advancing CHD management.
- This review provides a foundation for personalized treatment approaches in cardiovascular medicine.
Abstract:
Coronary heart disease (CHD) is a chronic cardiovascular disease with coronary atherosclerosis as the main pathological basis. Its occurrence and progression are not a simple process of lipid deposition, but a systemic pathological process jointly driven by metabolic disorders, chronic low-grade inflammation, and immune imbalance. Recent studies have shown that endothelial dysfunction is a key event in the early occurrence of CHD. Abnormal lipid metabolism, immune cell infiltration, and continuous activation of inflammatory signals together promote plaque formation, maturation, and destabilization. Especially under the regulation of the metabolism-inflammation-immunity network, a positive feedback loop is formed between immune cell metabolic reprogramming, macrophage polarization, inflammasome activation, and oxidative stress response, which accelerates the progression of atherosclerosis and increases the risk of acute coronary events. Traditional therapeutic strategies centered on lipid-lowering, antiplatelet therapy, and revascularization can reduce the incidence of short-term events, but there are still limitations in long-term risk control and fundamental reversal of the disease. From a narrative perspective, this article summarizes the research progress of CHD in pathological mechanisms, metabolism and immune regulation, plaque instability, and risk factors from a systematic perspective and focuses on discussing the potential value of multilevel and systematic intervention strategies in the precise prevention and treatment of CHD, providing a theoretical basis for future translational research and personalized treatment.
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