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Iron Dysregulation in Cardiovascular Diseases
Hui Wang1, Zhongmin Huang1, Chenyan Du1
1Geriatric Diseases Institute of Chengdu, Center for Medicine Research and Translation, Chengdu Fifth People's Hospital, 611137 Chengdu, Sichuan, China.
Insights
Iron metabolism is vital for health, but imbalances like deficiency or overload increase cardiovascular disease (CVD) risk. Understanding iron
Area of Science:
- Cardiovascular Science
- Metabolic Research
- Cell Death Mechanisms
Background:
- Iron is essential for human physiology, impacting growth and development.
- Disruptions in iron metabolism, including deficiency and overload, are linked to cardiovascular disease (CVD).
- Emerging research highlights ferroptosis, an iron-dependent cell death, as a potential contributor to CVD pathogenesis.
Purpose of the Study:
- To provide a comprehensive overview of iron metabolism and its connection to cardiovascular disease.
- To explore the role of ferroptosis in the development of CVD.
- To discuss current and future strategies for diagnosing, treating, and preventing CVD related to iron dysregulation.
Main Methods:
- Literature review integrating diverse expertise in CVD and iron metabolism.
- Analysis of existing research on iron homeostasis and its clinical implications.
- Synthesis of data on ferroptosis mechanisms in cardiovascular contexts.
Main Results:
- Iron dysregulation is a significant risk factor for cardiovascular disease development.
- Ferroptosis, driven by iron, is increasingly implicated in CVD.
- Current understanding highlights the need for integrated approaches to manage iron-related CVD.
Conclusions:
- Understanding iron metabolism and ferroptosis is crucial for advancing CVD management.
- Targeting iron dysregulation offers potential therapeutic avenues for CVD prevention and treatment.
- This review consolidates knowledge to guide future research and clinical practice in iron-related cardiovascular health.
Abstract:
Iron metabolism plays a crucial role in various physiological functions of the human body, as it is essential for the growth and development of almost all organisms. Dysregulated iron metabolism-manifested either as iron deficiency or overload-is a significant risk factor for the development of cardiovascular disease (CVD). Moreover, emerging evidence suggests that ferroptosis, a form of iron-dependent programed cell death, may also contribute to CVD development. Understanding the regulatory mechanisms of iron metabolism and ferroptosis in CVD is important for improving disease management. By integrating different perspectives and expertise in the field of CVD-related iron metabolism, this overview provides insights into iron metabolism and CVD, along with approaches for diagnosing, treating, and preventing CVD associated with iron dysregulation.
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