Literature DB >> 10938227

Intracellular pH regulation in neurons from chemosensitive and nonchemosensitive regions of Helix aspersa.

J I Goldstein1, J M Mok, C M Simon, J C Leiter.   

Abstract

We used 2',7'-bis(carboxyethyl)-5(6)-carboxyflourescein (BCECF), a pH-sensitive fluorescent dye, to study intracellular pH (pH(i)) regulation in neurons in CO(2) chemoreceptor and nonchemoreceptor regions in the pulmonate, terrestrial snail, Helix aspersa. We studied pH(i) during hypercapnic acidosis, after ammonia prepulse, and during isohydric hypercapnia. In all treatment conditions, pH(i) fell to similar levels in chemoreceptor and nonchemoreceptor regions. However, pH(i) recovery was consistently slower in chemoreceptor regions compared with nonchemoreceptor regions, and pH(i) recovery was slower in all regions when extracellular pH (pH(e)) was also reduced. We also studied the effect of amiloride and DIDS on pH(i) regulation during isohydric hypercapnia. An amiloride-sensitive mechanism was the dominant pH(i) regulatory process during acidosis. We conclude that pH(e) modulates and slows pH(i) regulation in chemoreceptor regions to a greater extent than in nonchemoreceptor regions by inhibiting an amiloride-sensitive Na(+)/H(+) exchanger. Although the phylogenetic distance between vertebrates and invertebrates is large, similar results have been reported in CO(2)-sensitive regions within the rat brain stem.

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Year:  2000        PMID: 10938227     DOI: 10.1152/ajpregu.2000.279.2.R414

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  12 in total

1.  Capacity for intracellular pH compensation during hypercapnia in white sturgeon primary liver cells.

Authors:  Khuong Tuyen Huynh; Daniel W Baker; Robert Harris; John Church; Colin J Brauner
Journal:  J Comp Physiol B       Date:  2011-04-26       Impact factor: 2.200

2.  Involvement of Na+/K+ pump in fine modulation of bursting activity of the snail Br neuron by 10 mT static magnetic field.

Authors:  Ljiljana Nikolić; Nataša Todorović; Joanna Zakrzewska; Marina Stanić; Snežana Rauš; Aleksandar Kalauzi; Branka Janać
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2012-04-26       Impact factor: 1.836

3.  CO2 chemoreception in cardiorespiratory control.

Authors:  Robert W Putnam
Journal:  J Appl Physiol (1985)       Date:  2010-01-21

4.  Optical recording of intracellular pH in respiratory chemoreceptors.

Authors:  Matthew J Gdovin; Debora A Zamora; C R Marutha Ravindran; James C Leiter
Journal:  Ethn Dis       Date:  2010       Impact factor: 1.847

Review 5.  Ionic mechanisms of central CO(2) chemosensitivity.

Authors:  Mykyta M Chernov; Joseph S Erlichman; J C Leiter
Journal:  Respir Physiol Neurobiol       Date:  2010-04-07       Impact factor: 1.931

6.  Intracellular acidosis and pH regulation in central respiratory chemoreceptors.

Authors:  C R Marutha Ravindran; James N Bayne; Sara C Bravo; Theo Busby; Charles N Crain; John A Escobedo; Kenneth Gresham; Brian J O'Grady; Lourdes Rios; Shashwata Roy; Matthew J Gdovin
Journal:  J Health Care Poor Underserved       Date:  2011

7.  Effect of hypercapnia on intracellular pH regulation in a rainbow trout hepatoma cell line, RTH 149.

Authors:  Khuong Tuyen Huynh; Daniel W Baker; Robert Harris; John Church; Colin J Brauner
Journal:  J Comp Physiol B       Date:  2011-05-03       Impact factor: 2.200

8.  Role of intracellular and extracellular pH in the chemosensitive response of rat locus coeruleus neurones.

Authors:  J A Filosa; J B Dean; R W Putnam
Journal:  J Physiol       Date:  2002-06-01       Impact factor: 5.182

9.  Effect of extracellular acid-base disturbances on the intracellular pH of neurones cultured from rat medullary raphe or hippocampus.

Authors:  Patrice Bouyer; Stefania Risso Bradley; Jinhua Zhao; Wengang Wang; George B Richerson; Walter F Boron
Journal:  J Physiol       Date:  2004-06-11       Impact factor: 5.182

10.  pH regulating transporters in neurons from various chemosensitive brainstem regions in neonatal rats.

Authors:  Anna E Kersh; Lynn K Hartzler; Kevin Havlin; Brittany Belcastro Hubbell; Vivian Nanagas; Avash Kalra; Jason Chua; Ryan Whitesell; Nick A Ritucci; Jay B Dean; Robert W Putnam
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-08-26       Impact factor: 3.619

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