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Author Spotlight: Decoding Mitochondrial Aging
Published on: June 30, 2023
Atherosclerosis as Mitochondriopathy: Repositioning the Disease to Help Finding New Therapies
Taisiia Shemiakova1, Ekaterina Ivanova2, Wei-Kai Wu3
1Institute of Translational Biomedicine, St. Petersburg State University, St. Petersburg, Russia.
Abstract:
Atherosclerosis is a complex pathology that involves both metabolic dysfunction and chronic inflammatory process. During the last decade, a considerable progress was achieved in describing the pathophysiological features of atherosclerosis and developing approaches that target the abnormal lipid metabolism and chronic inflammation. However, early events in the arterial wall that initiate the disease development still remain obscure. Finding effective therapeutic targets in these early processes would allow developing methods for disease prevention and, possibly, atherosclerotic plaque regression. Currently, these early events are being actively studied by several research groups. One of the processes that are being investigated is the development of mitochondrial dysfunction, which was demonstrated to be present in the affected areas of the arterial wall. Detection and characterization of mitochondrial dysfunction associated with several chronic human disorders was made possible by the improved methods of studying mitochondrial biology and detecting mitochondrial DNA (mtDNA) mutations. It was found to be involved in several key atherogenic processes, such as oxidative stress, chronic inflammation, and intracellular lipid accumulation. Mitochondrial dysfunction can occur in all types of cells involved in the pathogenesis of atherosclerosis: monocytes and macrophages, smooth muscle cells, lymphocytes, and the endothelial cells. However, therapies that would specifically target the mitochondria to correct mitochondrial dysfunction and neutralize the defective organelles are still remain to be developed and characterized. The aim of this review is to outline the prospects for mitochondrial therapy for atherosclerosis. We discuss mechanisms of mitochondria-mediated atherogenic processes, known mitochondria-targeting therapy strategies, and novel mitochondria-targeting drugs in the context of atherosclerosis.
Insights
Mitochondrial dysfunction contributes to atherosclerosis development. This review explores targeting mitochondria for novel atherosclerosis therapies and prevention strategies.
Area of Science:
- Cardiovascular Biology
- Mitochondrial Medicine
- Pathophysiology
Background:
- Atherosclerosis involves metabolic dysfunction and inflammation, with early arterial wall events remaining unclear.
- Mitochondrial dysfunction is increasingly recognized in chronic diseases, including atherosclerosis.
- Current therapies address lipid metabolism and inflammation but not early mitochondrial defects.
Purpose of the Study:
- To review the role of mitochondrial dysfunction in atherosclerosis pathogenesis.
- To explore prospects for mitochondria-targeting therapies in atherosclerosis.
- To discuss current and novel mitochondria-targeting drugs for treating atherosclerosis.
Main Methods:
- Review of current literature on mitochondrial biology and atherosclerosis.
- Analysis of mechanisms linking mitochondrial dysfunction to atherogenic processes.
- Evaluation of existing and emerging mitochondria-targeting therapeutic strategies.
Main Results:
- Mitochondrial dysfunction is implicated in oxidative stress, inflammation, and lipid accumulation in atherosclerosis.
- All cell types involved in atherosclerosis exhibit mitochondrial dysfunction.
- Specific therapies targeting mitochondrial dysfunction in atherosclerosis are still under development.
Conclusions:
- Mitochondrial dysfunction is a key early event in atherosclerosis.
- Targeting mitochondria offers a promising therapeutic avenue for atherosclerosis prevention and treatment.
- Further research is needed to develop and characterize effective mitochondria-targeted therapies for atherosclerosis.
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