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Updated: Aug 9, 2025

Setup of Capillary Electrophoresis-Inductively Coupled Plasma Mass Spectrometry CE-ICP-MS for Quantification of Iron Redox Species FeII, FeIII
Published on: May 4, 2020
Inflammation, dysregulated iron metabolism, and cardiovascular disease
1Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, The University at Buffalo, Buffalo, NY, United States.
Insights
This review explores how inflammation impacts heart iron metabolism. Understanding this connection is crucial for managing cardiac diseases linked to iron imbalance and inflammation.
Area of Science:
- Cardiovascular Biology
- Cellular Metabolism
- Immunology
Background:
- Systemic and cellular iron metabolism are tightly regulated due to iron's essential role and toxicity.
- Both iron overload and deficiency are linked to heart disease, as is inflammation.
- Iron metabolism and inflammation are interconnected, with hepcidin (a key regulator) induced by IL-6 during inflammation.
Purpose of the Study:
- To review current knowledge on cardiac iron metabolism.
- To examine the relationship between inflammation and heart iron handling.
- To highlight therapeutic strategies targeting inflammation and iron balance in cardiovascular disease.
Main Methods:
- Literature review focusing on iron metabolism proteins, uptake/efflux processes in cardiac cells.
- Analysis of evidence linking inflammation and cardiovascular disease.
- Discussion of known interactions between inflammatory processes and cardiac iron metabolism.
Main Results:
- Cardiac iron metabolism is not well understood, especially how inflammation affects it.
- Inflammation dysregulates systemic iron, often causing low serum iron (hypoferremia).
- A strong co-morbidity exists between inflammation and cardiac disease, with interconnected iron metabolism.
Conclusions:
- Alterations in iron balance are a significant, under-appreciated component of inflammatory heart diseases.
- Understanding the link between inflammation and cardiac iron metabolism is vital for therapeutic development.
- Targeting both inflammation and iron balance offers potential therapeutic avenues for cardiovascular conditions.
Abstract:
Iron is an essential trace element associated with both pathologic deficiency and toxic overload. Thus, systemic and cell iron metabolism are highly controlled processes regulated by protein expression and localization, as well as turnover, through the action of cytokines and iron status. Iron metabolism in the heart is challenging because both iron overload and deficiency are associated with cardiac disease. Also associated with cardiovascular disease is inflammation, as many cardiac diseases are caused by or include an inflammatory component. In addition, iron metabolism and inflammation are closely linked. Hepcidin, the master regulator of systemic iron metabolism, is induced by the cytokine IL-6 and as such is among the acute phase proteins secreted by the liver as part of the inflammatory response. In an inflammatory state, systemic iron homeostasis is dysregulated, commonly resulting in hypoferremia, or low serum iron. Less well characterized is cardiac iron metabolism in general, and even less is known about how inflammation impacts heart iron handling. This review highlights what is known with respect to iron metabolism in the heart. Expression of iron metabolism-related proteins and processes of iron uptake and efflux in these cell types are outlined. Evidence for the strong co-morbid relationship between inflammation and cardiac disease is also reviewed. Known connections between inflammatory processes and iron metabolism in the heart are discussed with the goal of linking inflammation and iron metabolism in this tissue, a connection that has been relatively under-appreciated as a component of heart function in an inflammatory state. Therapeutic options connecting inflammation and iron balance are emphasized, with the main goal of this review being to bring attention to alterations in iron balance as a component of inflammatory diseases of the cardiovascular system.
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