Cargando…

The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria

The A(1) adenosine and M(2) muscarinic receptors exert protective (including energy consumption limiting) effects in the heart. We investigated the influence of adenosine deaminase (ADA) inhibition on a representative energy consumption limiting function, the direct negative inotropic effect elicite...

Descripción completa

Detalles Bibliográficos
Autores principales: Pak, Krisztian, Zsuga, Judit, Kepes, Zita, Erdei, Tamas, Varga, Balazs, Juhasz, Bela, Szentmiklosi, Andras Jozsef, Gesztelyi, Rudolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4495724/
https://www.ncbi.nlm.nih.gov/pubmed/25877465
http://dx.doi.org/10.1007/s00210-015-1121-6
_version_ 1782380299335761920
author Pak, Krisztian
Zsuga, Judit
Kepes, Zita
Erdei, Tamas
Varga, Balazs
Juhasz, Bela
Szentmiklosi, Andras Jozsef
Gesztelyi, Rudolf
author_facet Pak, Krisztian
Zsuga, Judit
Kepes, Zita
Erdei, Tamas
Varga, Balazs
Juhasz, Bela
Szentmiklosi, Andras Jozsef
Gesztelyi, Rudolf
author_sort Pak, Krisztian
collection PubMed
description The A(1) adenosine and M(2) muscarinic receptors exert protective (including energy consumption limiting) effects in the heart. We investigated the influence of adenosine deaminase (ADA) inhibition on a representative energy consumption limiting function, the direct negative inotropic effect elicited by the A(1) adenosinergic and M(2) muscarinergic systems, in eu- and hyperthyroid atria. Furthermore, we compared the change in the interstitial adenosine level caused by ADA inhibition and nucleoside transport blockade, two well-established processes to stimulate the cell surface A(1) adenosine receptors, in both thyroid states. A classical isolated organ technique was applied supplemented with the receptorial responsiveness method (RRM), a concentration estimating procedure. Via measuring the contractile force, the direct negative inotropic capacity of N(6)-cyclopentyladenosine, a selective A(1) receptor agonist, and methacholine, a muscarinic receptor agonist, was determined on the left atria isolated from 8-day solvent- and thyroxine-treated guinea pigs in the presence and absence of 2′-deoxycoformycin, a selective ADA inhibitor, and NBTI, a selective nucleoside transporter inhibitor. We found that ADA inhibition (but not nucleoside transport blockade) increased the signal amplification of the A(1) adenosinergic (but not M(2) muscarinergic) system. This action of ADA inhibition developed in both thyroid states, but it was greater in hyperthyroidism. Nevertheless, ADA inhibition produced a smaller rise in the interstitial adenosine concentration than nucleoside transport blockade did in both thyroid states. Our results indicate that ADA inhibition, besides increasing the interstitial adenosine level, intensifies the atrial A(1) adenosinergic function in another (thyroid hormone-sensitive) way, suggesting a new mechanism of action of ADA inhibition.
format Online
Article
Text
id pubmed-4495724
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-44957242015-07-09 The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria Pak, Krisztian Zsuga, Judit Kepes, Zita Erdei, Tamas Varga, Balazs Juhasz, Bela Szentmiklosi, Andras Jozsef Gesztelyi, Rudolf Naunyn Schmiedebergs Arch Pharmacol Original Article The A(1) adenosine and M(2) muscarinic receptors exert protective (including energy consumption limiting) effects in the heart. We investigated the influence of adenosine deaminase (ADA) inhibition on a representative energy consumption limiting function, the direct negative inotropic effect elicited by the A(1) adenosinergic and M(2) muscarinergic systems, in eu- and hyperthyroid atria. Furthermore, we compared the change in the interstitial adenosine level caused by ADA inhibition and nucleoside transport blockade, two well-established processes to stimulate the cell surface A(1) adenosine receptors, in both thyroid states. A classical isolated organ technique was applied supplemented with the receptorial responsiveness method (RRM), a concentration estimating procedure. Via measuring the contractile force, the direct negative inotropic capacity of N(6)-cyclopentyladenosine, a selective A(1) receptor agonist, and methacholine, a muscarinic receptor agonist, was determined on the left atria isolated from 8-day solvent- and thyroxine-treated guinea pigs in the presence and absence of 2′-deoxycoformycin, a selective ADA inhibitor, and NBTI, a selective nucleoside transporter inhibitor. We found that ADA inhibition (but not nucleoside transport blockade) increased the signal amplification of the A(1) adenosinergic (but not M(2) muscarinergic) system. This action of ADA inhibition developed in both thyroid states, but it was greater in hyperthyroidism. Nevertheless, ADA inhibition produced a smaller rise in the interstitial adenosine concentration than nucleoside transport blockade did in both thyroid states. Our results indicate that ADA inhibition, besides increasing the interstitial adenosine level, intensifies the atrial A(1) adenosinergic function in another (thyroid hormone-sensitive) way, suggesting a new mechanism of action of ADA inhibition. Springer Berlin Heidelberg 2015-04-16 2015 /pmc/articles/PMC4495724/ /pubmed/25877465 http://dx.doi.org/10.1007/s00210-015-1121-6 Text en © The Author(s) 2015 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Pak, Krisztian
Zsuga, Judit
Kepes, Zita
Erdei, Tamas
Varga, Balazs
Juhasz, Bela
Szentmiklosi, Andras Jozsef
Gesztelyi, Rudolf
The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title_full The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title_fullStr The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title_full_unstemmed The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title_short The effect of adenosine deaminase inhibition on the A(1) adenosinergic and M(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
title_sort effect of adenosine deaminase inhibition on the a(1) adenosinergic and m(2) muscarinergic control of contractility in eu- and hyperthyroid guinea pig atria
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4495724/
https://www.ncbi.nlm.nih.gov/pubmed/25877465
http://dx.doi.org/10.1007/s00210-015-1121-6
work_keys_str_mv AT pakkrisztian theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT zsugajudit theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT kepeszita theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT erdeitamas theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT vargabalazs theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT juhaszbela theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT szentmiklosiandrasjozsef theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT gesztelyirudolf theeffectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT pakkrisztian effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT zsugajudit effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT kepeszita effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT erdeitamas effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT vargabalazs effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT juhaszbela effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT szentmiklosiandrasjozsef effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria
AT gesztelyirudolf effectofadenosinedeaminaseinhibitiononthea1adenosinergicandm2muscarinergiccontrolofcontractilityineuandhyperthyroidguineapigatria