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An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium

In earlier studies, we generated concentration-response (E/c) curves with CPA (N(6)-cyclopentyladenosine; a selective A(1) adenosine receptor agonist) or adenosine, in the presence or absence of S-(2-hydroxy-5-nitrobenzyl)-6-thioinosine (NBTI, a selective nucleoside transport inhibitor), and with or...

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Autores principales: Szabo, Adrienn Monika, Erdei, Tamas, Viczjan, Gabor, Kiss, Rita, Zsuga, Judit, Papp, Csaba, Pinter, Akos, Juhasz, Bela, Szilvassy, Zoltan, Gesztelyi, Rudolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630508/
https://www.ncbi.nlm.nih.gov/pubmed/31212849
http://dx.doi.org/10.3390/molecules24122207
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author Szabo, Adrienn Monika
Erdei, Tamas
Viczjan, Gabor
Kiss, Rita
Zsuga, Judit
Papp, Csaba
Pinter, Akos
Juhasz, Bela
Szilvassy, Zoltan
Gesztelyi, Rudolf
author_facet Szabo, Adrienn Monika
Erdei, Tamas
Viczjan, Gabor
Kiss, Rita
Zsuga, Judit
Papp, Csaba
Pinter, Akos
Juhasz, Bela
Szilvassy, Zoltan
Gesztelyi, Rudolf
author_sort Szabo, Adrienn Monika
collection PubMed
description In earlier studies, we generated concentration-response (E/c) curves with CPA (N(6)-cyclopentyladenosine; a selective A(1) adenosine receptor agonist) or adenosine, in the presence or absence of S-(2-hydroxy-5-nitrobenzyl)-6-thioinosine (NBTI, a selective nucleoside transport inhibitor), and with or without a pretreatment with 8-cyclopentyl-N(3)-[3-(4-(fluorosulfonyl)-benzoyloxy)propyl]-N(1)-propylxanthine (FSCPX, a chemical known as a selective, irreversible A(1) adenosine receptor antagonist), in isolated, paced guinea pig left atria. Meanwhile, we observed a paradoxical phenomenon, i.e., the co-treatment with FSCPX and NBTI appeared to enhance the direct negative inotropic response to adenosine. In the present in silico study, we aimed to reproduce eight of these E/c curves. Four models (and two additional variants of the last model) were constructed, each one representing a set of assumptions, in order to find the model exhibiting the best fit to the ex vivo data, and to gain insight into the paradoxical phenomenon in question. We have obtained in silico evidence for an interference between effects of FSCPX and NBTI upon our ex vivo experimental setting. Regarding the mechanism of this interference, in silico evidence has been gained for the assumption that FSCPX inhibits the effect of NBTI on the level of endogenous (but not exogenous) adenosine. As an explanation, it may be hypothesized that FSCPX inhibits an enzyme participating in the interstitial adenosine formation. In addition, our results suggest that NBTI does not stop the inward adenosine flux in the guinea pig atrium completely.
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spelling pubmed-66305082019-08-19 An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium Szabo, Adrienn Monika Erdei, Tamas Viczjan, Gabor Kiss, Rita Zsuga, Judit Papp, Csaba Pinter, Akos Juhasz, Bela Szilvassy, Zoltan Gesztelyi, Rudolf Molecules Article In earlier studies, we generated concentration-response (E/c) curves with CPA (N(6)-cyclopentyladenosine; a selective A(1) adenosine receptor agonist) or adenosine, in the presence or absence of S-(2-hydroxy-5-nitrobenzyl)-6-thioinosine (NBTI, a selective nucleoside transport inhibitor), and with or without a pretreatment with 8-cyclopentyl-N(3)-[3-(4-(fluorosulfonyl)-benzoyloxy)propyl]-N(1)-propylxanthine (FSCPX, a chemical known as a selective, irreversible A(1) adenosine receptor antagonist), in isolated, paced guinea pig left atria. Meanwhile, we observed a paradoxical phenomenon, i.e., the co-treatment with FSCPX and NBTI appeared to enhance the direct negative inotropic response to adenosine. In the present in silico study, we aimed to reproduce eight of these E/c curves. Four models (and two additional variants of the last model) were constructed, each one representing a set of assumptions, in order to find the model exhibiting the best fit to the ex vivo data, and to gain insight into the paradoxical phenomenon in question. We have obtained in silico evidence for an interference between effects of FSCPX and NBTI upon our ex vivo experimental setting. Regarding the mechanism of this interference, in silico evidence has been gained for the assumption that FSCPX inhibits the effect of NBTI on the level of endogenous (but not exogenous) adenosine. As an explanation, it may be hypothesized that FSCPX inhibits an enzyme participating in the interstitial adenosine formation. In addition, our results suggest that NBTI does not stop the inward adenosine flux in the guinea pig atrium completely. MDPI 2019-06-12 /pmc/articles/PMC6630508/ /pubmed/31212849 http://dx.doi.org/10.3390/molecules24122207 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Szabo, Adrienn Monika
Erdei, Tamas
Viczjan, Gabor
Kiss, Rita
Zsuga, Judit
Papp, Csaba
Pinter, Akos
Juhasz, Bela
Szilvassy, Zoltan
Gesztelyi, Rudolf
An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title_full An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title_fullStr An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title_full_unstemmed An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title_short An Advanced in Silico Modelling of the Interaction between FSCPX, an Irreversible A(1) Adenosine Receptor Antagonist, and NBTI, a Nucleoside Transport Inhibitor, in the Guinea Pig Atrium
title_sort advanced in silico modelling of the interaction between fscpx, an irreversible a(1) adenosine receptor antagonist, and nbti, a nucleoside transport inhibitor, in the guinea pig atrium
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630508/
https://www.ncbi.nlm.nih.gov/pubmed/31212849
http://dx.doi.org/10.3390/molecules24122207
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