ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS

The aim of this study was to investigate the role of the Na+, K+, 2Cl– -transport and potassium conductance, in the implementation of the effects of carbon monoxide in the SMC taenia coli and ureter of guinea pig.Materials and methods. The study was conducted by the method of double saccharose bridg...

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Main Authors: A. V. Skvortsov, M. A. Medvedev, V. B. Studnitsky, I. V. Kovalev, Y. A. Pogudin, S. V. Gusakova, O. I. Antonov, J. G. Birulina
Format: Article
Language:English
Published: Siberian State Medical University (Tomsk) 2016-06-01
Series:Бюллетень сибирской медицины
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Online Access:https://bulletin.ssmu.ru/jour/article/view/583
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author A. V. Skvortsov
M. A. Medvedev
V. B. Studnitsky
I. V. Kovalev
Y. A. Pogudin
S. V. Gusakova
O. I. Antonov
J. G. Birulina
author_facet A. V. Skvortsov
M. A. Medvedev
V. B. Studnitsky
I. V. Kovalev
Y. A. Pogudin
S. V. Gusakova
O. I. Antonov
J. G. Birulina
author_sort A. V. Skvortsov
collection DOAJ
description The aim of this study was to investigate the role of the Na+, K+, 2Cl– -transport and potassium conductance, in the implementation of the effects of carbon monoxide in the SMC taenia coli and ureter of guinea pig.Materials and methods. The study was conducted by the method of double saccharose bridge. Was studied the effects of carbon monoxide donor CORM2 in ureter and smooth muscle of guinea pig of taenia coli, in normal Krebs solution, against inhibitor-bumetanide and potassium channel blocker tetraethylammonium chloride (TEA). Studied the effects of bumetanide in normal Krebs solution and the background of TEA.Main results. CORM2 causes inhibition of contractile activity of SMC taenia coli and guinea pig ureter. Its effect is weakened by bumetanide and TEA. Bumetanide causes inhibition of contractile activity of SMC taenia coli, and its effect is weakened by TEA.Conclusions. In this way, it shows that there are tissue-specific mechanisms of interrelation effects CO and ion conductivity.
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issn 1682-0363
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spelling doaj-art-932b1f828fa04cb79c2bf9c760aa7d782025-08-20T03:21:42ZengSiberian State Medical University (Tomsk)Бюллетень сибирской медицины1682-03631819-36842016-06-01152656910.20538/1682-0363-2016-2-65-69532ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANSA. V. Skvortsov0M. A. Medvedev1V. B. Studnitsky2I. V. Kovalev3Y. A. Pogudin4S. V. Gusakova5O. I. Antonov6J. G. Birulina7Siberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskSiberian State Medical University, TomskThe aim of this study was to investigate the role of the Na+, K+, 2Cl– -transport and potassium conductance, in the implementation of the effects of carbon monoxide in the SMC taenia coli and ureter of guinea pig.Materials and methods. The study was conducted by the method of double saccharose bridge. Was studied the effects of carbon monoxide donor CORM2 in ureter and smooth muscle of guinea pig of taenia coli, in normal Krebs solution, against inhibitor-bumetanide and potassium channel blocker tetraethylammonium chloride (TEA). Studied the effects of bumetanide in normal Krebs solution and the background of TEA.Main results. CORM2 causes inhibition of contractile activity of SMC taenia coli and guinea pig ureter. Its effect is weakened by bumetanide and TEA. Bumetanide causes inhibition of contractile activity of SMC taenia coli, and its effect is weakened by TEA.Conclusions. In this way, it shows that there are tissue-specific mechanisms of interrelation effects CO and ion conductivity.https://bulletin.ssmu.ru/jour/article/view/583smooth muscle cellscarbon monoxidesmooth musclepotassium conductance of the membranena+k+2cl–-cotransporter
spellingShingle A. V. Skvortsov
M. A. Medvedev
V. B. Studnitsky
I. V. Kovalev
Y. A. Pogudin
S. V. Gusakova
O. I. Antonov
J. G. Birulina
ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
Бюллетень сибирской медицины
smooth muscle cells
carbon monoxide
smooth muscle
potassium conductance of the membrane
na+
k+
2cl–-cotransporter
title ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
title_full ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
title_fullStr ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
title_full_unstemmed ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
title_short ROLE OF Na+, K+, 2Cl– -COTRANSPORTER AND POTASSIUM CONDUCTIVITY IN THE REALIZATION OF THE EFFECT OF CARBON MONOXIDE, IN THE SMOOTH MUSCLE OF VISCERAL ORGANS
title_sort role of na k 2cl cotransporter and potassium conductivity in the realization of the effect of carbon monoxide in the smooth muscle of visceral organs
topic smooth muscle cells
carbon monoxide
smooth muscle
potassium conductance of the membrane
na+
k+
2cl–-cotransporter
url https://bulletin.ssmu.ru/jour/article/view/583
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