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Saturated Fatty Acids Induce Ceramide-associated Macrophage Cell Death
Published on: October 31, 2017
Macrophage Death as a Pharmacological Target in Atherosclerosis
Wim Martinet1, Isabelle Coornaert1, Pauline Puylaert1
1Laboratory of Physiopharmacology, University of Antwerp, Antwerp, Belgium.
Insights
Macrophages play a key role in atherosclerosis. Understanding macrophage death mechanisms offers new therapeutic strategies to treat this cardiovascular disease and stabilize plaques.
Area of Science:
- Cardiovascular Research
- Immunology
- Cell Biology
Background:
- Atherosclerosis is a chronic inflammatory disease of arteries.
- Current treatments like statins reduce lipids but leave residual cardiovascular risk.
- Macrophages are central to all stages of atherosclerotic lesion development.
Purpose of the Study:
- To review mechanisms of macrophage death in atherosclerosis.
- To discuss the impact of macrophage death on plaque stability and formation.
- To explore novel therapeutic targets for atherosclerosis.
Main Methods:
- Review of canonical and regulated macrophage death pathways.
- Discussion of apoptosis, necrosis, necroptosis, pyroptosis, ferroptosis, and parthanatos.
- Analysis of autophagy's role in macrophage survival and death (autosis).
Main Results:
- Macrophage death contributes significantly to necrotic core formation and plaque destabilization.
- Insufficient efferocytosis leads to secondary necrosis.
- Various regulated necrosis pathways may occur in advanced atherosclerotic plaques.
Conclusions:
- Understanding macrophage death mechanisms is crucial for developing new atherosclerosis treatments.
- Targeting macrophage death pathways can help stabilize vulnerable plaques.
- Novel pharmacological strategies may emerge from insights into macrophage death interactions.
Abstract:
Atherosclerosis is a chronic inflammatory disorder characterized by the gradual build-up of plaques within the vessel wall of middle-sized and large arteries. Over the past decades, treatment of atherosclerosis mainly focused on lowering lipid levels, which can be accomplished by the use of statins. However, some patients do not respond sufficiently to statin therapy and therefore still have a residual cardiovascular risk. This issue highlights the need for novel therapeutic strategies. As macrophages are implicated in all stages of atherosclerotic lesion development, they represent an important alternative drug target. A variety of anti-inflammatory strategies have recently emerged to treat or prevent atherosclerosis. Here, we review the canonical mechanisms of macrophage death and their impact on atherogenesis and plaque stability. Macrophage death is a prominent feature of advanced plaques and is a major contributor to necrotic core formation and plaque destabilization. Mechanisms of macrophage death in atherosclerosis include apoptosis, passive or accidental necrosis as well as secondary necrosis, a type of death that typically occurs when apoptotic cells are insufficiently cleared by neighboring cells via a phagocytic process termed efferocytosis. In addition, less-well characterized types of regulated necrosis in macrophages such as necroptosis, pyroptosis, ferroptosis, and parthanatos may occur in advanced plaques and are also discussed. Autophagy in plaque macrophages is an important survival pathway that protects against cell death, yet massive stimulation of autophagy promotes another type of death, usually referred to as autosis. Multiple lines of evidence indicate that a better insight into the different mechanisms of macrophage death, and how they mutually interact, will provide novel pharmacological strategies to resolve atherosclerosis and stabilize vulnerable, rupture-prone plaques.
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