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The Role of Iron in Atherosclerosis and its Association with Related Diseases
Yingbo Gao1, Boda Wang1, Mengrui Hu1
1Department of Biochemistry and Molecular Biology, Key Laboratory of Neural and Vascular Biology, Ministry of Education, Hebei Medical University, Shijiazhuang, 050017, China.
Insights
Excess iron, particularly non-transferrin-bound iron (NTBI), accelerates atherosclerosis by promoting oxidative stress and inflammation. Targeting iron metabolism offers a promising therapeutic strategy for cardiovascular diseases.
Area of Science:
- Cardiovascular Research
- Iron Metabolism
- Pathogenesis of Atherosclerosis
Background:
- Atherosclerosis is a complex cardiovascular disease.
- Iron plays a critical role in cellular processes.
- Understanding iron's role in atherosclerosis is crucial for developing new treatments.
Purpose of the Study:
- To review the role of iron in atherosclerosis pathogenesis.
- To summarize recent advances in iron-related cellular mechanisms.
- To explore therapeutic strategies targeting iron metabolism for cardiovascular diseases.
Main Methods:
- Literature review of studies on iron and atherosclerosis.
- Analysis of cellular mechanisms involved in iron-mediated pathogenesis.
- Evaluation of therapeutic implications of targeting iron metabolism.
Main Results:
- Excess iron, especially non-transferrin-bound iron (NTBI), accelerates atherosclerosis.
- Iron overload promotes lipid peroxidation, oxidative stress, inflammation, and ferroptosis.
- Iron impacts endothelial cells, vascular smooth muscle cells, and macrophages, contributing to plaque instability.
Conclusions:
- Iron significantly contributes to atherosclerosis progression through various cellular pathways.
- Targeting iron metabolism presents a viable therapeutic approach for cardiovascular diseases.
- Further research into iron's role can lead to novel prevention and treatment strategies.
Purpose Of Review:
This review aims to elucidate the multifaceted role of iron in the pathogenesis of atherosclerosis. The primary objective is to summarize recent advances in understanding how iron contributes to atherosclerosis through various cellular mechanisms. Additionally, the review explores the therapeutic implications of targeting iron metabolism in the prevention and treatment of cardiovascular diseases.
Recent Findings:
A growing body of literature suggests that excess iron accelerates the progression of atherosclerosis, with the deleterious form of iron, non-transferrin-bound iron (NTBI), particularly exacerbating this process. Furthermore, iron overload has been demonstrated to play a pivotal role in endothelial cells, vascular smooth muscle cells, and macrophages, contributing to plaque instability and disease progression by promoting lipid peroxidation, oxidative stress, inflammatory responses, and ferroptosis. Iron plays a complex role in atherosclerosis, influencing multiple cellular processes and promoting disease progression. By promoting oxidative stress, inflammation, and ferroptosis, iron exacerbates endothelial dysfunction, smooth muscle cell calcification, and the formation of macrophage-derived foam cells. Targeted therapies focusing on iron metabolism have proven effective in treating atherosclerosis and other cardiovascular diseases.
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