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Published on: November 24, 2020
Triglyceride-rich lipoproteins and cardiovascular diseases
Dandan Xu1,2, Lin Xie1, Cheng Cheng2
1State Key Laboratory for Innovation and Transformation of Luobing Theory, Key Laboratory of Cardiovascular Remodeling and Function Research, Chinese Ministry of Education, Chinese National Health Commission and Chinese Academy of Medical Sciences, Department of Cardiology, Qilu Hospital of Shandong University, Jinan, China.
Insights
Cardiovascular diseases are rising, driven by atherosclerosis. Targeting triglyceride-rich lipoproteins (TRLs) and their remnants offers a new therapeutic strategy beyond LDL-C reduction for preventing cardiovascular events.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Atherosclerosis Pathogenesis
Background:
- Cardiovascular diseases (CVD) are a leading global cause of mortality, with atherosclerosis (AS) as a primary driver.
- Dyslipidemia, particularly elevated low-density lipoprotein cholesterol (LDL-C), is a key risk factor, but many patients remain at high risk despite LDL-C reduction.
- Emerging evidence highlights the role of triglycerides and triglyceride-rich lipoproteins (TRLs) and their remnants in AS risk, especially in patients with cardiometabolic abnormalities.
Purpose of the Study:
- To review the current understanding of the pathogenesis of TRLs-induced AS.
- To emphasize the importance of targeting TRLs and their remnants for reducing cardiovascular disease (CVD) morbidity and mortality.
- To explore TRLs as a therapeutic target beyond traditional LDL-C reduction.
Main Methods:
- Review of genetic, epidemiologic, and clinical studies on TRLs and AS risk.
- Analysis of the mechanisms of TRLs accumulation and arterial deposition.
- Discussion of therapeutic implications for managing dyslipidemia and preventing CVD.
Main Results:
- Studies suggest a causal relationship between TRLs, their remnants, and increased AS risk.
- Disordered TRLs levels significantly increase atherosclerosis risk in patients with obesity, metabolic syndrome, diabetes, and chronic kidney disease.
- Mechanisms include over-synthesis of TRLs, impaired lipolysis, and reduced hepatic clearance of TRL remnants, leading to arterial inflammation and foam cell formation.
Conclusions:
- TRLs and their remnants represent an independent risk factor for adverse cardiovascular events.
- Targeting TRLs-induced AS pathogenesis could significantly impede AS progression.
- This approach may reduce cardiovascular disease morbidity and mortality, particularly coronary atherosclerotic heart disease.
Abstract:
The global prevalence of cardiovascular diseases (CVD) continues to rise steadily, making it a leading cause of mortality worldwide. Atherosclerosis (AS) serves as a primary driver of these conditions, commencing silently at an early age and culminating in adverse cardiovascular events that severely impact patients' quality of life or lead to fatality. Dyslipidemia, particularly elevated levels of low-density lipoprotein cholesterol (LDL-C), plays a pivotal role in AS pathogenesis as an independent risk factor. Research indicates that abnormal LDL-C accumulation within arterial walls acts as a crucial trigger for atherosclerotic plaque formation. As the disease progresses, plaque accumulation may rupture or dislodge, resulting in thrombus formation and complete blood supply obstruction, ultimately causing myocardial infarction, cerebral infarction, and other common adverse cardiovascular events. Despite adequate pharmacologic therapy targeting LDL-C reduction, patients with cardiometabolic abnormalities remain at high risk for disease recurrence, highlighting the importance of addressing lipid risk factors beyond LDL-C. Recent attention has focused on the causal relationship between triglycerides, triglyceride-rich lipoproteins (TRLs), and their remnants in AS risk. Genetic, epidemiologic, and clinical studies suggest a causal relationship between TRLs and their remnants and the increased risk of AS, and this dyslipidemia may be an independent risk factor for adverse cardiovascular events. Particularly in patients with obesity, metabolic syndrome, diabetes, and chronic kidney disease, disordered TRLs and its remnants levels significantly increase the risk of atherosclerosis and cardiovascular disease development. Accumulation of over-synthesized TRLs in plasma, impaired function of enzymes involved in TRLs lipolysis, and impaired hepatic clearance of cholesterol-rich TRLs remnants can lead to arterial deposition of TRLs and its remnants, promoting foam cell formation and arterial wall inflammation. Therefore, understanding the pathogenesis of TRLs-induced AS and targeting it therapeutically could slow or impede AS progression, thereby reducing cardiovascular disease morbidity and mortality, particularly coronary atherosclerotic heart disease.
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