Literature DB >> 21395586

Active transport at the blood-CSF barrier contributes to manganese influx into the brain.

Charlotte Schmitt1, Nathalie Strazielle, Pierre Richaud, Alexandre Bouron, Jean-François Ghersi-Egea.   

Abstract

Manganese is an essential trace element, and a contrast agent of potential interest for brain magnetic resonance imaging. Brain overexposure to manganese, however induces a neurodegenerative syndrome. Imaging data suggest that manganese appearance into the CSF precedes its accumulation into the cerebral parenchyma. We therefore investigated manganese uptake and transport at the blood-CSF barrier. Like lead, the non protein-bound divalent manganese accumulated into the rat choroid plexus. The metal accumulation was especially high in developing animals. Using a differentiated cellular model of the blood-CSF barrier, we demonstrated that manganese crosses the choroid plexus epithelium by a concentrating, unidirectional blood-to-CSF transport mechanism. This transport was inhibited by calcium, which is also transported into the CSF against its concentration gradient. The permeability barrier function towards lipid-insoluble compound and the organic anion transport property of the blood-brain interface were affected by exposure of the blood-facing membrane of choroidal cells to micromolar concentrations of manganese, but its antioxidant capacity was not. The unidirectional transport of manganese across the choroid plexus provides the anatomo-functional basis linking the systemic exposure to manganese with the spreading pattern of manganese accumulation observed in brain imaging, and explains the polarized sensitivity of choroidal epithelial cells to manganese toxicity.
© 2011 The Authors. Journal of Neurochemistry © 2011 International Society for Neurochemistry.

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Year:  2011        PMID: 21395586     DOI: 10.1111/j.1471-4159.2011.07246.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  18 in total

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Journal:  Exp Toxicol Pathol       Date:  2012-03-19

4.  Glutathione Conjugation at the Blood-CSF Barrier Efficiently Prevents Exposure of the Developing Brain Fluid Environment to Blood-Borne Reactive Electrophilic Substances.

Authors:  Ingrid Kratzer; Nathalie Strazielle; Elodie Saudrais; Kati Mönkkönen; Céline Malleval; Sandrine Blondel; Jean-François Ghersi-Egea
Journal:  J Neurosci       Date:  2018-03-05       Impact factor: 6.167

5.  Impact of manganese on and transfer across blood-brain and blood-cerebrospinal fluid barrier in vitro.

Authors:  Julia Bornhorst; Christoph A Wehe; Sabine Hüwel; Uwe Karst; Hans-Joachim Galla; Tanja Schwerdtle
Journal:  J Biol Chem       Date:  2012-03-28       Impact factor: 5.157

6.  Welding-related brain and functional changes in welders with chronic and low-level exposure.

Authors:  Eun-Young Lee; Michael R Flynn; Mechelle M Lewis; Richard B Mailman; Xuemei Huang
Journal:  Neurotoxicology       Date:  2017-06-23       Impact factor: 4.294

7.  Expression and Transport of α-Synuclein at the Blood-Cerebrospinal Fluid Barrier and Effects of Manganese Exposure.

Authors:  Christopher A Bates; Sherleen Fu; Daniel Ysselstein; Jean-Christophe Rochet; Wei Zheng
Journal:  ADMET DMPK       Date:  2015-03-31

Review 8.  Manganese Toxicity Upon Overexposure: a Decade in Review.

Authors:  Stefanie L O'Neal; Wei Zheng
Journal:  Curr Environ Health Rep       Date:  2015-09

9.  Activity-induced manganese-dependent MRI (AIM-MRI) and functional MRI in awake rabbits during somatosensory stimulation.

Authors:  Matthew P Schroeder; Craig Weiss; Daniel Procissi; Lei Wang; John F Disterhoft
Journal:  Neuroimage       Date:  2015-11-14       Impact factor: 6.556

10.  Manganese-Enhanced MRI of the Brain in Healthy Volunteers.

Authors:  D M Sudarshana; G Nair; J T Dwyer; B Dewey; S U Steele; D J Suto; T Wu; B A Berkowitz; A P Koretsky; I C M Cortese; D S Reich
Journal:  AJNR Am J Neuroradiol       Date:  2019-08-01       Impact factor: 3.825

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