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Author Spotlight: A Pharmacodissection Approach to Uncover Mechanisms in Cardiovascular Disease Risk Populations
Published on: July 21, 2023
Apolipoprotein A-I (CSL112) and Cardiovascular Outcomes in Atherosclerotic Cardiovascular Disease: A Scoping Review
Awais Habib1, Muhammad Saood Moazzam Khan1, Ahmad Aneeq1
1Department of Medicine, Ibn e Seena Hospital, Kabul, Afghanistan.
Insights
Apolipoprotein A-I (ApoA-I) shows promise as a biomarker and therapeutic target for atherosclerotic cardiovascular disease (ASCVD). While it aids in cholesterol transport and reduces inflammation, its clinical use is complex, requiring further research for personalized strategies.
Area of Science:
- Cardiovascular Science
- Biochemistry
- Medical Research
Background:
- Apolipoprotein A-I (ApoA-I) is the main protein in high-density lipoproteins (HDL), crucial for cardiovascular health.
- ApoA-I's role in atherosclerotic cardiovascular disease (ASCVD) is significant, involving lipid transport, anti-inflammatory, and antioxidant functions.
Conclusions:
- ApoA-I is a promising biomarker and therapeutic target for ASCVD, but clinical application faces variability challenges.
- Future research should explore gene therapies, small molecule modulators, and ApoA-I mimetics to enhance its utility.
- Personalized treatment strategies incorporating ApoA-I could improve cardiovascular outcomes and reduce disease burden.
Background:
Apolipoprotein A-I (ApoA-I), the principal protein component of high-density lipoproteins (HDL), plays a pivotal role in cardiovascular physiology and has gained increasing attention in atherosclerotic cardiovascular disease (ASCVD). Its involvement extends beyond lipid transport to include anti-inflammatory and antioxidant mechanisms.
Objective:
To comprehensively evaluate the role of ApoA-I in ASCVD, including its biological functions, clinical relevance as a biomarker, and potential as a therapeutic target.
Methods:
A scoping review of the literature was conducted to examine current evidence on ApoA-I in cardiovascular health and disease. Studies assessing its role in reverse cholesterol transport (RCT), association with cardiovascular outcomes, and emerging therapeutic strategies were included.
Results:
ApoA-I contributes significantly to reverse cholesterol transport and exhibits antioxidant and anti-inflammatory properties that protect against atherosclerosis. Elevated ApoA-I levels are consistently associated with reduced risk of major adverse cardiovascular events, supporting its utility as a biomarker for cardiovascular risk assessment. However, variability in HDL particle composition and the influence of confounding factors such as comorbidities and lifestyle limit its interpretability. Therapeutic approaches targeting ApoA-I, including infusion therapies and mimetic peptides, have shown mixed results in clinical trials, highlighting ongoing challenges.
Conclusion:
ApoA-I remains a promising biomarker and therapeutic target in ASCVD, though its clinical application is complicated by biological and methodological variability. Future research focusing on gene therapies, small molecule modulators, and ApoA-I mimetics may enhance its functional properties and clinical utility. Integrating ApoA-I into personalized treatment strategies could improve cardiovascular outcomes and reduce disease burden.
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