Manganese toxicity upon overexposure
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Open Access
- 1 November 2004
- journal article
- review article
- Published by Wiley in NMR in Biomedicine
- Vol. 17 (8) , 544-553
- https://doi.org/10.1002/nbm.931
Abstract
Manganese (Mn) is a required element and a metabolic byproduct of the contrast agent mangafodipir trisodium (MnDPDP). The Mn released from MnDPDP is initially sequestered by the liver for first‐pass elimination, which allows an enhanced contrast for diagnostic imaging. The administration of intravenous Mn impacts its homeostatic balance in the human body and can lead to toxicity. Human Mn deficiency has been reported in patients on parenteral nutrition and in micronutrient studies. Mn toxicity has been reported through occupational (e.g. welder) and dietary overexposure and is evidenced primarily in the central nervous system, although lung, cardiac, liver, reproductive and fetal toxicity have been noted. Mn neurotoxicity results from an accumulation of the metal in brain tissue and results in a progressive disorder of the extrapyramidal system which is similar to Parkinson's disease. In order for Mn to distribute from blood into brain tissue, it must cross either the blood–brain barrier (BBB) or the blood–cerebrospinal fluid barrier (BCB). Brain import, with no evidence of export, would lead to brain Mn accumulation and neurotoxicity. The mechanism for the neurodegenerative damage specific to select brain regions is not clearly understood. Disturbances in iron homeostasis and the valence state of Mn have been implicated as key factors in contributing to Mn toxicity. Chelation therapy with EDTA and supplementation with levodopa are the current treatment options, which are mildly and transiently efficacious. In conclusion, repeated administration of Mn, or compounds that readily release Mn, may increase the risk of Mn‐induced toxicity. Copyright © 2004 John Wiley & Sons, Ltd.Keywords
This publication has 122 references indexed in Scilit:
- Synergistic Role of 3-Hydroxy-3-Methylglutaryl Coenzyme A Reductase and Cholesterol 7alpha-Hydroxylase in the Pathogenesis of Manganese-Bilirubin-Induced Cholestasis in RatsToxicological Sciences, 2003
- Stability and transmetallation of the magnetic resonance contrast agent MnDPDP measured by EPRJBIC Journal of Biological Inorganic Chemistry, 2002
- Developmental toxicity of mangafodipir trisodium and manganese chloride in Sprague‐Dawley ratsTeratology, 1995
- Assessment of the permissible exposure level to manganese in workers exposed to manganese dioxide dust.Occupational and Environmental Medicine, 1992
- Saturable transport of Ca into CSF in chronic hypo‐ and hypercalcemiaJournal of Neuroscience Research, 1991
- Functional changes of the biliary tree associated with experimentally induced cholestasis: Sulfobromophthalein on manganese-bilirubin combinationsToxicology and Applied Pharmacology, 1991
- A morphometric study on the development of the lateral ventricle choroid plexus, choroid plexus capillaries and ventricular ependyma in the ratDevelopmental Brain Research, 1990
- Possible Health Effects of High Manganese Concentration in Drinking WaterArchives of environmental health, 1989
- Role of Manganese in Bone MetabolismPublished by American Chemical Society (ACS) ,1987
- Pulmonary clearance of soluble and insoluble forms of manganeseJournal of Toxicology and Environmental Health, 1986