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Impact of chronic and acute inflammation on extra- and intracellular iron homeostasis
1Department of Nutritional Sciences, Pennsylvania State University, University Park, PA acr6@psu.edu.
Abstract:
Inflammation has a major impact on iron homeostasis. This review focuses on acute and chronic inflammation as it affects iron trafficking and, as a result, the availability of this essential micronutrient to the host. In situations of microbial infection, not only the host is affected but also the offending microorganisms, which, in general, not only require iron for their own growth but have evolved mechanisms to obtain it from the infected host. Key players in mammalian iron trafficking include several types of cells important to iron acquisition, homeostasis, and hematopoiesis (enterocytes, hepatocytes, macrophages, hematopoietic cells, and in the case of pregnancy, placental syncytiotrophoblast cells) and several forms of chaperone proteins, including, for nonheme iron, the transport protein transferrin and the intracellular iron-storage protein ferritin, and for heme iron, the chaperone proteins haptoglobin and hemopexin. Additional key players are the cell membrane-associated iron transporters, particularly ferroportin (FPN), the only protein known to modulate iron export from cells, and finally, the iron-regulatory hormone hepcidin, which, in addition to having antibacterial activity, regulates the functions of FPN. Interestingly, the impact of infection on iron homeostasis differs among pathogens whose mode of infection is mainly intracellular or extracellular. Understanding how inflammation affects each of these processes may be crucial for understanding how inflammation affects iron status, indicators of iron sufficiency, and iron supplementation during inflammation and how it may potentially result in a beneficial or detrimental impact on the host.
Insights
Inflammation significantly impacts iron homeostasis and availability. This review explores how acute and chronic inflammation affect iron trafficking, influencing host and microbial iron needs during infection.
Area of Science:
- * Physiology
- * Immunology
- * Nutritional Science
Background:
- * Inflammation profoundly affects iron homeostasis, influencing iron availability for both the host and invading microorganisms.
- * Microbial pathogens require iron for growth and have evolved mechanisms to acquire it from the host.
Purpose of the Study:
- * To review the impact of acute and chronic inflammation on iron trafficking and host iron availability.
- * To elucidate the roles of key cellular and protein players in mammalian iron homeostasis during inflammation.
- * To understand how inflammation-induced changes in iron status affect host outcomes.
Main Methods:
- * Literature review focusing on inflammation, iron homeostasis, and microbial-host interactions.
- * Analysis of key cellular components (enterocytes, hepatocytes, macrophages, etc.) and proteins (transferrin, ferritin, hemopexin, ferroportin, hepcidin) involved in iron metabolism.
- * Examination of pathogen-specific strategies for iron acquisition during infection.
Main Results:
- * Inflammation alters iron trafficking, impacting iron availability to the host and microbes.
- * Key proteins like ferroportin and hepcidin play critical roles in regulating cellular iron export and systemic iron levels.
- * The intracellular or extracellular nature of pathogens influences the specific effects on iron homeostasis.
Conclusions:
- * Understanding inflammation's effects on iron metabolism is crucial for managing iron status during infections.
- * Altered iron availability can have beneficial or detrimental consequences for the host.
- * Further research is needed to optimize iron supplementation strategies in inflammatory conditions.
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