Literature DB >> 10868637

Manganese deposition in the globus pallidus in patients with biliary atresia.

S Ikeda1, Y Yamaguchi, Y Sera, H Ohshiro, S Uchino, Y Yamashita, M Ogawa.   

Abstract

BACKGROUND: Chronic liver diseases may alter trace element contents in the brain. Among these trace elements, manganese is a ubiquitous transition metal excreted by the liver into the bile. Blood concentrations of manganese are elevated in patients with biliary atresia who have undergone hepatic portoenterostomy. The present study investigated the effects of liver transplantation on manganese deposition in the brain in such patients.
METHODS: The signal intensity of the globus pallidus was calculated as an index defined as the percentile ratio of signal intensity in the globus pallidus to the subcortical frontal white-matter in sagittal T1-weighted magnetic resonance imaging planes.
RESULTS: Brain magnetic resonance imaging revealed hyperintense signals in the globus pallidus due to manganese deposition in biliary atresia patients. Few neurologic symptoms related to manganese intoxication were observed. However, one 23-year-old female with biliary atresia had depressive symptoms and dyskinesia; she improved after oral administration of the dopamine precursor, L-DOPA. Manganese deposition disappeared in two patients after living-related reduced-size hepatic transplantation.
CONCLUSIONS: Manganese accumulates in the brain during cholestasis associated with biliary atresia and disappears after hepatic transplantation. Manganese deposition is likely to be subclinical and reversible but may be associated with some age-related neurologic symptoms.

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Year:  2000        PMID: 10868637     DOI: 10.1097/00007890-200006150-00021

Source DB:  PubMed          Journal:  Transplantation        ISSN: 0041-1337            Impact factor:   4.939


  11 in total

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Review 3.  Role of Astrocytes in Manganese Neurotoxicity Revisited.

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5.  Fatigue and primary biliary cirrhosis: association of globus pallidus magnetisation transfer ratio measurements with fatigue severity and blood manganese levels.

Authors:  D M Forton; N Patel; M Prince; A Oatridge; G Hamilton; J Goldblatt; J M Allsop; J V Hajnal; H C Thomas; M Bassendine; D E J Jones; S D Taylor-Robinson
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6.  Glyphosate, pathways to modern diseases III: Manganese, neurological diseases, and associated pathologies.

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Review 7.  Genetic factors and manganese-induced neurotoxicity.

Authors:  Pan Chen; Nancy Parmalee; Michael Aschner
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Review 8.  Nutritional Needs and Support for Children with Chronic Liver Disease.

Authors:  Christine H Yang; Brandon J Perumpail; Eric R Yoo; Aijaz Ahmed; John A Kerner
Journal:  Nutrients       Date:  2017-10-16       Impact factor: 5.717

9.  Mapping the basal ganglia alterations in children chronically exposed to manganese.

Authors:  Yi Lao; Laurie-Anne Dion; Guillaume Gilbert; Maryse F Bouchard; Gabriel Rocha; Yalin Wang; Natasha Leporé; Dave Saint-Amour
Journal:  Sci Rep       Date:  2017-02-03       Impact factor: 4.379

10.  Atypical Neuropsychiatric Presentation in a Patient Expecting Liver Transplantation.

Authors:  Laury Chamelian; Austin Pereira; Kiran Grant; Catherine Maurice
Journal:  Case Rep Transplant       Date:  2018-07-09
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