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January 1, 2007World Journal of Gastroenterology158 citationsOpen Access

Role of alcohol in the regulation of iron metabolism

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DHDuygu Dee Harrison-Findik

Key Points

  • To review the mechanisms by which alcohol interacts with iron-regulatory proteins and alters iron homeostasis to exacerbate liver disease.
  • Reviewed clinical and biological literature on alcohol-induced changes in iron indices, including ferritin and transferrin saturation.
  • Analyzed the molecular mechanisms involving novel iron-regulatory proteins, particularly hepcidin, in alcoholic liver disease and genetic hemochromatosis.
  • Alcohol intake, even at mild-to-moderate levels, correlates with elevated serum iron markers and increased hepatic iron accumulation.
  • Excess hepatic iron synergizes with alcohol to induce oxidative stress and lipid peroxidation, leading to higher mortality rates in alcoholic cirrhosis and worse outcomes in genetic hemochromatosis.
  • Hepcidin and other regulatory molecules play a central role in modulating the systemic and hepatic iron overload triggered by alcohol exposure.

Abstract

Patients with alcoholic liver disease frequently exhibit increased body iron stores, as reflected by elevated serum iron indices (transferrin saturation, ferritin) and hepatic iron concentration. Even mild to moderate alcohol consumption has been shown to increase the prevalence of iron overload. Moreover, increased hepatic iron content is associated with greater mortality from alcoholic cirrhosis, suggesting a pathogenic role for iron in alcoholic liver disease. Alcohol increases the severity of disease in patients with genetic hemochromatosis, an iron overload disorder common in the Caucasian population. Both iron and alcohol individually cause oxidative stress and lipid peroxidation, which culminates in liver injury. Despite these observations, the underlying mechanisms of iron accumulation and the source of the excess iron observed in alcoholic liver disease remain unclear. Over the last decade, several novel iron-regulatory proteins have been identified and these have greatly enhanced our understanding of iron metabolism. For example, hepcidin, a circulatory antimicrobial peptide synthesized by the hepatocytes of the liver is now known to play a central role in the regulation of iron homeostasis. This review attempts to describe the interaction of alcohol and iron-regulatory molecules. Understanding these molecular mechanisms is of considerable clinical importance because both alcoholic liver disease and genetic hemochromatosis are common diseases, in which alcohol and iron appear to act synergistically to cause liver injury.

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Cite This Study

Duygu Dee Harrison-Findik (2007) studied this question.

synapsesocial.com/papers/69d971aac7f0c3ae80a3d835https://doi.org/10.3748/wjg.v13.i37.4925
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