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Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.

We investigated the mechanism of Cl- secretion by fluoroaluminate(AlF4-) and sodium orthovanadate(vanadate) using the human colonic T84 cell line. T84 cell monolayers grown on collagen-coated filters were mounted in Ussing chambers to measure short circuit current(ISC). Serosal addition of AlF4- or...

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Autores principales: Hwang, T. H., Jung, J. S., Bae, H. R., Yun, I., Lee, S. H.
Formato: Texto
Lenguaje:English
Publicado: Korean Academy of Medical Sciences 1994
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3054232/
https://www.ncbi.nlm.nih.gov/pubmed/7786447
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author Hwang, T. H.
Jung, J. S.
Bae, H. R.
Yun, I.
Lee, S. H.
author_facet Hwang, T. H.
Jung, J. S.
Bae, H. R.
Yun, I.
Lee, S. H.
author_sort Hwang, T. H.
collection PubMed
description We investigated the mechanism of Cl- secretion by fluoroaluminate(AlF4-) and sodium orthovanadate(vanadate) using the human colonic T84 cell line. T84 cell monolayers grown on collagen-coated filters were mounted in Ussing chambers to measure short circuit current(ISC). Serosal addition of AlF4- or vanadate to T84 monolayers produced a sustained increase in ISC. Removal of Ca2+ from the serosal bathing solution partially inhibited AlF4-(-)and vanadate-induced ISC, and readministration of Ca2+ restored AlF4-(-)and vanadate-induced ISC. Carbachol application in the presence of forskolin, AlF4- or vanadate induced a synergistic increase of ISC. Forskolin and vanadate significantly increased cellular cAMP level, while carbachol and AlF4- did not. Carbachol, AlF4- and vanadate significantly increased [Ca2+]i. After Na+ in mucosal bathing solution was replaced with K+, and the mucosal membrane of T84 cell was permeabilized with amphotericin B, AlF4-, vanadate, and carbachol increased K+ conductance, but forskolin did not. After sodium chloride in serosal bathing solution was replaced with sodium gluconate and the serosal membrane was permeabilized with nystatin, forskolin, AlF4-, and vanadate increased Cl- conductance, but carbachol did not. AlF4-(-)induced ISC was remarkably inhibited by the pretreatment of pertussis toxin(2 micrograms/ml) for 2 hours. These results indicate that AlF4- and vanadate can increase Cl- secretion via simultaneous stimulation of Cl- channel and K+ channel in T84 cells. However, the AlF4- action is mostly attributed to stimulation of pertussis toxin-sensitive G-proteins, whereas the vanadate action mostly results from G protein-independent mechanisms.
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spelling pubmed-30542322011-03-15 Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells. Hwang, T. H. Jung, J. S. Bae, H. R. Yun, I. Lee, S. H. J Korean Med Sci Research Article We investigated the mechanism of Cl- secretion by fluoroaluminate(AlF4-) and sodium orthovanadate(vanadate) using the human colonic T84 cell line. T84 cell monolayers grown on collagen-coated filters were mounted in Ussing chambers to measure short circuit current(ISC). Serosal addition of AlF4- or vanadate to T84 monolayers produced a sustained increase in ISC. Removal of Ca2+ from the serosal bathing solution partially inhibited AlF4-(-)and vanadate-induced ISC, and readministration of Ca2+ restored AlF4-(-)and vanadate-induced ISC. Carbachol application in the presence of forskolin, AlF4- or vanadate induced a synergistic increase of ISC. Forskolin and vanadate significantly increased cellular cAMP level, while carbachol and AlF4- did not. Carbachol, AlF4- and vanadate significantly increased [Ca2+]i. After Na+ in mucosal bathing solution was replaced with K+, and the mucosal membrane of T84 cell was permeabilized with amphotericin B, AlF4-, vanadate, and carbachol increased K+ conductance, but forskolin did not. After sodium chloride in serosal bathing solution was replaced with sodium gluconate and the serosal membrane was permeabilized with nystatin, forskolin, AlF4-, and vanadate increased Cl- conductance, but carbachol did not. AlF4-(-)induced ISC was remarkably inhibited by the pretreatment of pertussis toxin(2 micrograms/ml) for 2 hours. These results indicate that AlF4- and vanadate can increase Cl- secretion via simultaneous stimulation of Cl- channel and K+ channel in T84 cells. However, the AlF4- action is mostly attributed to stimulation of pertussis toxin-sensitive G-proteins, whereas the vanadate action mostly results from G protein-independent mechanisms. Korean Academy of Medical Sciences 1994-12 /pmc/articles/PMC3054232/ /pubmed/7786447 Text en
spellingShingle Research Article
Hwang, T. H.
Jung, J. S.
Bae, H. R.
Yun, I.
Lee, S. H.
Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title_full Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title_fullStr Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title_full_unstemmed Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title_short Stimulation of Cl- secretion by AlF4- and vanadate in T84 cells.
title_sort stimulation of cl- secretion by alf4- and vanadate in t84 cells.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3054232/
https://www.ncbi.nlm.nih.gov/pubmed/7786447
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