Impact of chronic and acute inflammation on extra- and intracellular iron homeostasis

A Catharine Ross1

  • 1Department of Nutritional Sciences, Pennsylvania State University, University Park, PA acr6@psu.edu.

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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