Does thiamine protect the brain from iron overload and alcohol-related dementia?
- PMID: 32808749
- PMCID: PMC7983902
- DOI: 10.1002/alz.12146
Does thiamine protect the brain from iron overload and alcohol-related dementia?
Abstract
Alcohol-related dementia (ARD) is a common and severe co-morbidity in alcohol use disorder (AUD). We propose brain iron overload (BIO) to be an important and previously neglected pathogenic process, accelerating cognitive decline in AUD. Furthermore, we suggest thiamine, which is frequently depleted in AUD, to be a key modulator in this process: Thiamine deficiency impairs the integrity of the blood-brain barrier, thereby enabling iron to pass through and accumulate in the brain. This hypothesis is based on findings from animal, translational, and neuroimaging studies, discussed in this article. To validate this hypothesis, translational studies focusing on brain iron homeostasis in AUD, as well as prospective clinical studies investigating prevalence and clinical impact of BIO in AUD, should be conducted. If proven right, this would change the understanding of ARD and may lead to novel therapeutic interventions in prevention and treatment of ARD.
Keywords: alcohol use disorder; blood-brain barrier; brain iron accumulation; cognitive decline; dementia; neurodegeneration; neurotoxicity; thiamine.
© 2020 The Authors. Alzheimer's & Dementia published by Wiley Periodicals LLC on behalf of Alzheimer's Association.
Conflict of interest statement
We have no conflicts of interest to declare.
References
-
- Gupta S, Warner J. Alcohol‐related dementia: a 21st‐century silent epidemic? Br J Psychiatry. 2008;193(5):351‐353. - PubMed
-
- Whiteford HA, Degenhardt L, Rehm J, et al. Global burden of disease attributable to mental and substance use disorders: findings from the Global Burden of Disease Study 2010. Lancet. 2013;382(9904):1575‐1586. - PubMed
-
- Ruitenberg A, Van Swieten JC, Witteman JCM, et al. Alcohol consumption and risk of dementia: the Rotterdam Study. Lancet. 2002;359(9303):281‐286. - PubMed
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