Literature DB >> 3115115

Regulation of brain water and electrolytes during acute hyperosmolality in rats.

H F Cserr, M DePasquale, C S Patlak.   

Abstract

Regulation of brain water and electrolytes during acute hyperosmolal states has been studied in anesthetized rats. Rats were injected intravenously or intraperitoneally with hypertonic NaCl, mannitol, or sucrose (hyperosmolal series) or with isotonic NaCl (isosmolal controls). Terminal plasma osmolality varied from 290 to 385 mosmol/kg and the experimental duration from 15 to 120 min. Osmotically induced water loss from brain tissue for the different protocols was only 26-78% of that predicted for ideal osmotic behavior, revealing a degree of tissue volume regulation, and the brain gained Na, Cl, and K. This gain was sufficient to account quantitatively for tissue volume regulation at 120 min of hypernatremia but not at shorter times or during mannitol- or sucrose-induced hyperosmolality. Water loss and electrolyte uptake occur simultaneously, over 30 min, which limits the degree of brain shrinkage. Results of this analysis of the time course and magnitude of tissue electrolyte gain during acute hyperosmolality form the basis for the following two studies of the volume regulatory influx of electrolyte from plasma and CSF, respectively.

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Year:  1987        PMID: 3115115     DOI: 10.1152/ajprenal.1987.253.3.F522

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  17 in total

1.  CSF sub-compartments in relation to plasma osmolality in healthy controls and in patients with first episode schizophrenia.

Authors:  Handan Gunduz-Bruce; Katherine L Narr; Ralitza Gueorguieva; Arthur W Toga; Philip R Szeszko; Manzar Ashtari; Delbert G Robinson; Serge Sevy; John M Kane; Robert M Bilder
Journal:  Psychiatry Res       Date:  2007-03-29       Impact factor: 3.222

2.  Comparative effects of glucose- and mannitol-induced osmolar stress on blood-brain barrier function in ovine fetuses and lambs.

Authors:  Barbara S Stonestreet; Grazyna B Sadowska; R Choudary Hanumara; Mihaela Petrache; Katherine H Petersson; Clifford S Patlak
Journal:  J Cereb Blood Flow Metab       Date:  2011-08-31       Impact factor: 6.200

Review 3.  Volume regulation in brain cells: cellular and molecular mechanisms.

Authors:  H Pasantes-Morales
Journal:  Metab Brain Dis       Date:  1996-09       Impact factor: 3.584

4.  Anti-IL-6 neutralizing antibody modulates blood-brain barrier function in the ovine fetus.

Authors:  Jiyong Zhang; Grazyna B Sadowska; Xiaodi Chen; Seon Yeong Park; Jeong-Eun Kim; Courtney A Bodge; Erin Cummings; Yow-Pin Lim; Oleksandr Makeyev; Walter G Besio; John Gaitanis; William A Banks; Barbara S Stonestreet
Journal:  FASEB J       Date:  2015-01-21       Impact factor: 5.191

Review 5.  Molecular mechanisms of brain water transport.

Authors:  Nanna MacAulay
Journal:  Nat Rev Neurosci       Date:  2021-04-12       Impact factor: 34.870

6.  Contribution of organic and inorganic osmolytes to volume regulation in rat brain cells in culture.

Authors:  H Pasantes-Morales; S Alavez; R Sánchez Olea; J Morán
Journal:  Neurochem Res       Date:  1993-04       Impact factor: 3.996

7.  Alterations of GABA metabolism and seizure susceptibility in the substantia nigra of the kindled rat acclimating to changes in osmotic state.

Authors:  C F Baxter; C C Oh; C G Wasterlain; L K Ozaki; R A Baldwin
Journal:  Neurochem Res       Date:  1991-03       Impact factor: 3.996

8.  Extracellular volume decreases while cell volume is maintained by ion uptake in rat brain during acute hypernatremia.

Authors:  H F Cserr; M DePasquale; C Nicholson; C S Patlak; K D Pettigrew; M E Rice
Journal:  J Physiol       Date:  1991-10       Impact factor: 5.182

Review 9.  Cell volume regulation: a review of cerebral adaptive mechanisms and implications for clinical treatment of osmolal disturbances: II.

Authors:  H Trachtman
Journal:  Pediatr Nephrol       Date:  1992-01       Impact factor: 3.714

10.  Selective effect of mannitol-induced hyperosmolality on brain interstitial fluid and water content in white matter.

Authors:  G A Rosenberg; J Barrett; E Estrada; J Brayer; W T Kyner
Journal:  Metab Brain Dis       Date:  1988-09       Impact factor: 3.584

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