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High-Density Lipoprotein Metabolism and Function in Cardiovascular Diseases: What about Aging and Diet Effects?
Mojgan Morvaridzadeh1, Nada Zoubdane1, Javad Heshmati1
1Department of Medicine, Geriatric Service, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, QC J1H 4N4, Canada.
Insights
High-density lipoprotein (HDL) levels correlate with cardiovascular events but its function, not just concentration, is key. Understanding HDL remodeling and cholesterol efflux is vital for assessing cardiovascular disease risk.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Biomarker Discovery
Background:
- Cardiovascular diseases (CVDs) are the leading cause of mortality globally.
- Plasma high-density lipoprotein (HDL) levels are associated with cardiovascular events, making them a key biomarker.
- However, HDL's role is complex, as its functionality, not just concentration, influences cardiovascular health.
Purpose of the Study:
- To explore the relationship between HDL structure, function, and cardiovascular disease risk.
- To review the mechanisms of HDL-mediated cholesterol efflux.
- To examine the impact of aging and diet on HDL functionality.
Main Methods:
- Review of current literature on HDL structure and function.
- Analysis of HDL's anti-atherosclerotic properties, including cholesterol efflux.
- Examination of factors influencing HDL remodeling and function.
Main Results:
- HDL functionality, independent of concentration, is crucial for its anti-atherosclerotic effects.
- Cholesterol efflux capacity is a primary measure of HDL functionality.
- HDL structure and components significantly impact its atheroprotective properties.
Conclusions:
- Interpreting the association between HDL levels and CVD risk requires understanding HDL's dynamic nature and functionality.
- HDL's role in cholesterol efflux is central to its atheroprotective capacity.
- Aging and diet can modulate HDL structure and function, influencing cardiovascular risk.
Abstract:
Cardiovascular diseases (CVDs) have become the leading global cause of mortality, prompting a heightened focus on identifying precise indicators for their assessment and treatment. In this perspective, the plasma levels of HDL have emerged as a pivotal focus, given the demonstrable correlation between plasma levels and cardiovascular events, rendering them a noteworthy biomarker. However, it is crucial to acknowledge that HDLs, while intricate, are not presently a direct therapeutic target, necessitating a more nuanced understanding of their dynamic remodeling throughout their life cycle. HDLs exhibit several anti-atherosclerotic properties that define their functionality. This functionality of HDLs, which is independent of their concentration, may be impaired in certain risk factors for CVD. Moreover, because HDLs are dynamic parameters, in which HDL particles present different atheroprotective properties, it remains difficult to interpret the association between HDL level and CVD risk. Besides the antioxidant and anti-inflammatory activities of HDLs, their capacity to mediate cholesterol efflux, a key metric of HDL functionality, represents the main anti-atherosclerotic property of HDL. In this review, we will discuss the HDL components and HDL structure that may affect their functionality and we will review the mechanism by which HDL mediates cholesterol efflux. We will give a brief examination of the effects of aging and diet on HDL structure and function.
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