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Lipid droplet-associated proteins in atherosclerosis (Review)
Janeesh Plakkal Ayyappan1, Antoni Paul1, Young-Hwa Goo1
1Center for Cardovascular Sciences, Albany Medical College, Albany, NY 12208, USA.
Insights
Lipid droplets and their associated proteins (LDAPs) drive foam cell formation, a key factor in atherosclerosis. Targeting LDAPs offers a potential therapeutic strategy for cardiovascular diseases.
Area of Science:
- Cardiovascular Biology
- Cellular Metabolism
- Lipid Biology
Background:
- Macrophages engulf modified low-density lipoprotein (LDL) particles, accumulating lipids in cytosolic lipid droplets (LDs) to form foam cells.
- Foam cells are central to atherosclerotic plaque development and are characterized by aberrant lipid droplet accumulation.
- Lipid droplet-associated proteins (LDAPs) regulate LD functions and are implicated in metabolic diseases and atherosclerosis.
Purpose of the Study:
- To review foam cell-targeting pathways in atherosclerosis.
- To emphasize the role of LDAPs in cholesterol mobilization from macrophages.
- To discuss the therapeutic potential of targeting LDAPs for atherosclerosis.
Main Methods:
- Literature review of foam cell formation mechanisms.
- Analysis of the role of LDAPs in lipid metabolism and atherosclerosis.
- Exploration of therapeutic strategies targeting LDAPs.
Main Results:
- LDAPs play a significant role in the pathogenesis of metabolic diseases and atherosclerosis.
- Specific pathways involving LDAPs in cholesterol mobilization from macrophages are highlighted.
- Aberrant accumulation of lipid droplets in foam cells is a hallmark of atherosclerotic lesions.
Conclusions:
- LDAPs are crucial in foam cell formation and cholesterol metabolism.
- Targeting LDAPs presents a promising therapeutic avenue for preventing or reversing atherosclerosis.
- Further research into LDAP-mediated pathways could lead to novel cardiovascular disease interventions.
Abstract:
Accumulation of atherosclerotic plaques in arterial walls leads to major cardiovascular diseases and stroke. Macrophages/foam cells are central components of atherosclerotic plaques, which populate the arterial wall in order to remove harmful modified low‑density lipoprotein (LDL) particles, resulting in the accumulation of lipids, mostly LDL‑derived cholesterol ester, in cytosolic lipid droplets (LDs). At present, LDs are recognized as dynamic organelles that govern cellular metabolic processes. LDs consist of an inner core of neutral lipids surrounded by a monolayer of phospholipids and free cholesterol, and contain LD‑associated proteins (LDAPs) that regulate LD functions. Foam cells are characterized by an aberrant accumulation of cytosolic LDs, and are considered a hallmark of atherosclerotic lesions through all stages of development. Previous studies have investigated the mechanisms underlying foam cell formation, aiming to discover therapeutic strategies that target foam cells and intervene against atherosclerosis. It is well established that LDAPs have a major role in the pathogenesis of metabolic diseases caused by dysfunction of lipid metabolism, and several studies have linked LDAPs to the development of atherosclerosis. In this review, several foam cell‑targeting pathways have been described, with an emphasis on the role of LDAPs in cholesterol mobilization from macrophages. In addition, the potential of LDAPs as therapeutic targets to prevent the progression and/or facilitate the regression of the disease has been discussed.
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