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Cell-free Biochemical Fluorometric Enzymatic Assay for High-throughput Measurement of Lipid Peroxidation in High Density Lipoprotein
Published on: October 12, 2017
[High density lipoproteins (HDL). A therapeutic objective in the atherosclerosis prevention?]
1Departamento de Fisiología, Instituto Nacional de Cardiología, Ignacio Chávez, INCICH, Juan Badiano No. 1 Col. Sección XVI, Tlalpan 14080 México, D.F. opmmendez@yahoo.com
Insights
High density lipoproteins (HDL) are crucial for reverse cholesterol transport and possess anti-atherosclerotic properties. Increasing HDL functionality, not just levels, is key for preventing coronary heart disease.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Preventive Cardiology
Context:
- High density lipoproteins (HDL) are heterogeneous particles influencing cardiovascular health.
- Low HDL cholesterol levels are linked to increased atherosclerotic heart disease risk.
- HDL plays a vital role in reverse cholesterol transport and possesses atheroprotective properties.
Purpose:
- To explore the role of HDL in cardiovascular disease prevention.
- To evaluate the impact of HDL levels and functionality on atherosclerosis.
- To discuss strategies for increasing HDL for coronary heart disease prevention.
Summary:
- HDL particles are diverse and undergo remodeling, impacting their function.
- Low HDL levels impair cholesterol removal from tissues, contributing to atherosclerosis.
- HDL exhibits anti-inflammatory, antioxidant, and pro-fibrinolytic effects.
- HDL infusion and genetic manipulation studies support its anti-atherosclerotic potential.
- Intervention trials show reduced coronary events by increasing HDL-cholesterol, particularly in secondary prevention.
- Lifestyle changes like exercise and smoking cessation are recommended for primary prevention.
- Pharmacological interventions (niacin, fibrates) may be considered when lifestyle changes are insufficient.
- Different HDL subclasses have varying anti-atherosclerotic properties, emphasizing the need to focus on HDL functionality.
Impact:
- Findings suggest targeting HDL levels as a strategy for coronary heart disease prevention.
- Highlights the importance of lifestyle modifications for increasing HDL and reducing cardiovascular risk.
- Suggests that future interventions should aim to enhance HDL functionality for greater atheroprotective effects.
Abstract:
High density lipoproteins (HDL) are a family of heterogeneous particles that vary in size, density and chemical composition, as a result of their synthesis and catabolism rates, and a continuous intravascular remodeling by the action of enzymes and transport proteins. Low plasma levels of HDL correlate with a high risk of atherosclerotic heart disease. Such a diminished concentration of HDL affect reverse cholesterol transport, which is the metabolic pathway responsible for the movement of cholesterol excess from peripheral tissues to the liver for recycling or excretion. In addition, HDL possess anti-inflammatory, anti-oxidative, anti-aggregatory, anti-coagulant, and pro-fibrinolytic properties, as has been demonstrated by in vitro studies. Some of those potentially anti-atherosclerotic in vitro-properties has been corroborated by HDL infusion in vivo. Such evidences and the protection of susceptible animals from atherosclerosis by transgenic manipulation of HDL metabolism, raise the possibility to focus the HDL plasma levels as a main target in coronary heart disease prevention. Intervention trials have shown an important reduction in coronary events by rising HDL-cholesterol, mainly in the secondary prevention. Increasing HDL plasma levels by hygienic intervention such as aerobic exercise, weight loss and stop smoking is strongly recommended to reduce coronary risk in primary prevention. Pharmacological intervention to rise the HDL plasma levels with niacin or fibrates, should be considered in some patients as an alternative when hygienic intervention fails. Finally, it most be taken into account that the different HDL subclasses does not possess the same anti-atherosclerotic properties, suggesting that hygienic and pharmacological interventions should focus to increase HDL functionality rather than HDL-cholesterol plasma levels.
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