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December 14, 2004FEMS Immunology & Medical Microbiology274 citationsOpen Access

Iron and infection: the heart of the matter

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JBJ. J. BullenHRH. J. RogersPSPaul B. Spalding

Key Points

  • To review the biochemical mechanisms controlling free ionic iron availability in tissue fluids and its central role in natural host resistance to bacterial infection.
  • Evaluated physiological interactions among tissue oxygenation, oxidation-reduction potential (Eh), and pH in regulating iron binding by unsaturated transferrin and lactoferrin.
  • Analyzed the pathophysiological consequences of trauma and ischemia on iron release, alongside the therapeutic potential of hyperbaric oxygen.
  • Host antibacterial defenses strictly depend on maintaining an extremely low free ionic iron concentration (10^-18 M) in normal tissue fluids via unsaturated transferrin and lactoferrin.
  • Trauma-induced ischemia lowers tissue Eh and pH, promoting iron release from transferrin, disabling fluid bactericidal properties, and markedly increasing bacterial virulence.
  • Hyperbaric oxygen is identified as a viable therapeutic strategy to elevate tissue Eh and pH, thereby restoring native iron-binding and antibacterial systems.

Abstract

Bacterial resistance to antibiotics is a major threat to clinical medicine. However, natural resistance to bacterial infection, which does not depend on antibiotics, is a powerful protective mechanism common to all mankind. The availability of iron is the heart of the matter and the successful functioning of these antibacterial systems depends entirely upon an extremely low level of free ionic iron (10(-18) M) in normal tissue fluids. This in turn depends on well-oxygenated tissues where the oxidation-reduction potential (Eh) and pH control the binding of iron by unsaturated transferrin and lactoferrin. Bacterial virulence is greatly enhanced by freely available iron, such as that in fully-saturated transferrin or free haemoglobin. Following trauma a fall in tissue Eh and pH due to ischaemia, plus the reducing powers of bacteria, can make iron in transferrin freely available and abolish the bactericidal properties of tissue fluids with disastrous results for the host. Hyperbaric oxygen is a possible therapeutic measure that could restore normal bactericidal systems in infected tissues by raising the Eh and pH.

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Cite This Study

Bullen et al. (2004) studied this question.

synapsesocial.com/papers/69d862f1c025a7c015bedc80https://doi.org/10.1016/j.femsim.2004.11.010
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