Please use this identifier to cite or link to this item: http://hdl.handle.net/2440/84259
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dc.contributor.authorGhabriel, M.en
dc.contributor.authorVink, R.en
dc.date.issued2011en
dc.identifier.citationMagnesium in the Central Nervous System, 2011 / Vink, R., Nechifor, M. (ed./s), pp.59-74en
dc.identifier.isbn9780987073068en
dc.identifier.urihttp://hdl.handle.net/2440/84259-
dc.description.abstractThe finding that magnesium levels are reduced in acute and chronic brain diseases has led to a recent surge in interest in the role of magnesium in the normal and injured nervous system, although the mechanisms of magnesium decline in pathological conditions and its availability in the neural tissue after administration are not fully understood. The brain has two main barrier systems: (1) the blood-­‐brain barrier (BBB) formed by brain capillary endothelial cells which separate the blood from the extracellular fluid in the neuropil; and (2) the blood-­‐CSF barrier (BCSFB) formed by choroidal epithelial cells which separate the blood from the CSF. Genetic studies in families with hereditary hypomagnesemia have identified mutations in two genes encoding claudin-­‐16 (paracellin-­‐1) and claudin-­‐19, both localized at tight junctions between nephron epithelial cells and providing passive paracellular conductance for magnesium in the kidney. Endothelial cells of the BBB also express claudins, although whether members of the claudin family expressed at the BBB and BCSFB have similar conductance for magnesium akin to the role of claudin-­‐16 and -­‐19 in the nephron remains to be confirmed. Recently, the transient receptor potential melastatin (TRPM) members TRPM6 and TRPM7 have been identified as cation channels for magnesium transport. Although it is not known if choroidal epithelial cells express TRPM6 and TRPM7, these molecules are expressed by brain endothelial cells and may play a role in magnesium transport. While it is evident that magnesium enters the CNS through the BBB and is actively transported by choroidal epithelial cells into the CSF, the mechanisms of its entry into the brain will require further investigation.en
dc.description.statementofresponsibilityMounir N. Ghabriel and Robert Vinken
dc.language.isoenen
dc.publisherUniversity of Adelaide Pressen
dc.rights© 2011 The Authorsen
dc.source.urihttp://www.adelaide.edu.au/press/titles/magnesium/en
dc.titleMagnesium transport across the blood-brain barriersen
dc.typeBook chapteren
dc.identifier.rmid0020120375en
dc.identifier.doi10.1017/UPO9780987073051.004en
dc.publisher.placeAdelaide, South Australiaen
dc.identifier.pubid24031-
pubs.library.collectionAnatomical Sciences publicationsen
pubs.verification-statusVerifieden
pubs.publication-statusPublisheden
dc.identifier.orcidGhabriel, M. [0000-0002-9153-271X]en
Appears in Collections:Anatomical Sciences publications

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