Molecular Mechanisms Underlying Atherosclerosis and Current Advances in Targeted Therapeutics
Bo Zhu

TL;DR
This paper reviews the molecular causes of atherosclerosis and recent advances in targeted treatments to improve prevention and therapy.
Contribution
The paper synthesizes recent molecular insights and translational opportunities in atherosclerosis therapeutics.
Findings
Genetic and epigenetic factors influence atherosclerosis through lipid and inflammatory pathways.
Emerging therapies target immune metabolism and novel regulators beyond traditional lipid-lowering approaches.
Precision medicine and multi-omics approaches promise better risk prediction and treatment personalization.
Abstract
Atherosclerosis is a chronic, multifactorial vascular disease and the leading global cause of cardiovascular morbidity. Its development reflects interconnected disturbances in lipid metabolism, endothelial function, inflammation, smooth muscle cell (SMC) phenotypic switching, and extracellular matrix remodeling. Genetic predisposition, including monogenic disorders such as familial hypercholesterolemia and polygenic risk variants, modulates disease susceptibility by altering lipid homeostasis as well as inflammatory and thrombotic pathways. Epigenetic regulators and noncoding RNAs, such as histone modifications, microRNAs, and long noncoding RNAs, further shape gene expression and link environmental cues to vascular pathology. Endothelial injury promotes lipoprotein retention and oxidation, triggering monocyte recruitment and macrophage-driven foam cell formation, cytokine secretion,…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsAtherosclerosis and Cardiovascular Diseases · Lipoproteins and Cardiovascular Health · Biological Research and Disease Studies
