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Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)

Remdesivir (RDV, GS-5734), a broad-spectrum antiviral drug in the class of nucleotide analogs, has been particularly tailored for treatment of coronavirus infections. However, to which extent RDV is able to modify various types of membrane ion currents remains largely uncertain. In this study, we he...

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Autores principales: Chang, Wei-Ting, Liu, Ping-Yen, Gao, Zi-Han, Lee, Shih-Wei, Lee, Wen-Kai, Wu, Sheng-Nan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385287/
https://www.ncbi.nlm.nih.gov/pubmed/32792942
http://dx.doi.org/10.3389/fphar.2020.01091
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author Chang, Wei-Ting
Liu, Ping-Yen
Gao, Zi-Han
Lee, Shih-Wei
Lee, Wen-Kai
Wu, Sheng-Nan
author_facet Chang, Wei-Ting
Liu, Ping-Yen
Gao, Zi-Han
Lee, Shih-Wei
Lee, Wen-Kai
Wu, Sheng-Nan
author_sort Chang, Wei-Ting
collection PubMed
description Remdesivir (RDV, GS-5734), a broad-spectrum antiviral drug in the class of nucleotide analogs, has been particularly tailored for treatment of coronavirus infections. However, to which extent RDV is able to modify various types of membrane ion currents remains largely uncertain. In this study, we hence intended to explore the possible perturbations of RDV on ionic currents endogenous in pituitary GH(3) cells and Jurkat T-lymphocytes. The whole-cell current recordings of ours disclosed that upon membrane depolarization in GH(3) cells the exposure to RDV concentration-dependently depressed the peak or late components of I (K(DR)) elicitation with effective IC(50) values of 10.1 or 2.8 μM, respectively; meanwhile, the value of dissociation constant of RDV-induced blockage of I (K(DR)) on the basis of the first-order reaction was yielded to be 3.04 μM. Upon the existence of RDV, the steady-state inactivation curve of I (K(DR)) was established in the RDV presence; moreover, the recovery became slowed. However, RDV-induced blockage of I (K(DR)) failed to be overcome by further addition of either α,β-methylene ATP or cyclopentyl-1,3-dipropylxanthine. The RDV addition also lessened the strength of M-type K(+) current with the IC(50) value of 2.5 μM. The magnitude of voltage hysteresis of I (K(M)) elicited by long-lasting triangular ramp pulse was diminished by adding RDV. Membrane electroporation-induced current in response to large hyperpolarization was enhanced, with an EC(50) value of 5.8 μM. Likewise, in Jurkat T-lymphocytes, adding RDV declined I (K(DR)) amplitude concomitantly with the raised rate of current inactivation applied by step depolarization. Therefore, in terms of the RDV molecule, there appears to be an unintended activity of the prodrug on ion channels. Its inhibition of both I (K(DR)) and I (K(M)) occurring in a non-genomic fashion might provide additional but important mechanisms through which in vivo cellular functions are seriously perturbed.
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spelling pubmed-73852872020-08-12 Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP) Chang, Wei-Ting Liu, Ping-Yen Gao, Zi-Han Lee, Shih-Wei Lee, Wen-Kai Wu, Sheng-Nan Front Pharmacol Pharmacology Remdesivir (RDV, GS-5734), a broad-spectrum antiviral drug in the class of nucleotide analogs, has been particularly tailored for treatment of coronavirus infections. However, to which extent RDV is able to modify various types of membrane ion currents remains largely uncertain. In this study, we hence intended to explore the possible perturbations of RDV on ionic currents endogenous in pituitary GH(3) cells and Jurkat T-lymphocytes. The whole-cell current recordings of ours disclosed that upon membrane depolarization in GH(3) cells the exposure to RDV concentration-dependently depressed the peak or late components of I (K(DR)) elicitation with effective IC(50) values of 10.1 or 2.8 μM, respectively; meanwhile, the value of dissociation constant of RDV-induced blockage of I (K(DR)) on the basis of the first-order reaction was yielded to be 3.04 μM. Upon the existence of RDV, the steady-state inactivation curve of I (K(DR)) was established in the RDV presence; moreover, the recovery became slowed. However, RDV-induced blockage of I (K(DR)) failed to be overcome by further addition of either α,β-methylene ATP or cyclopentyl-1,3-dipropylxanthine. The RDV addition also lessened the strength of M-type K(+) current with the IC(50) value of 2.5 μM. The magnitude of voltage hysteresis of I (K(M)) elicited by long-lasting triangular ramp pulse was diminished by adding RDV. Membrane electroporation-induced current in response to large hyperpolarization was enhanced, with an EC(50) value of 5.8 μM. Likewise, in Jurkat T-lymphocytes, adding RDV declined I (K(DR)) amplitude concomitantly with the raised rate of current inactivation applied by step depolarization. Therefore, in terms of the RDV molecule, there appears to be an unintended activity of the prodrug on ion channels. Its inhibition of both I (K(DR)) and I (K(M)) occurring in a non-genomic fashion might provide additional but important mechanisms through which in vivo cellular functions are seriously perturbed. Frontiers Media S.A. 2020-07-21 /pmc/articles/PMC7385287/ /pubmed/32792942 http://dx.doi.org/10.3389/fphar.2020.01091 Text en Copyright © 2020 Chang, Liu, Gao, Lee, Lee and Wu http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Chang, Wei-Ting
Liu, Ping-Yen
Gao, Zi-Han
Lee, Shih-Wei
Lee, Wen-Kai
Wu, Sheng-Nan
Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title_full Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title_fullStr Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title_full_unstemmed Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title_short Evidence for the Effectiveness of Remdesivir (GS-5734), a Nucleoside-Analog Antiviral Drug in the Inhibition of I (K(M)) or I (K(DR)) and in the Stimulation of I (MEP)
title_sort evidence for the effectiveness of remdesivir (gs-5734), a nucleoside-analog antiviral drug in the inhibition of i (k(m)) or i (k(dr)) and in the stimulation of i (mep)
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7385287/
https://www.ncbi.nlm.nih.gov/pubmed/32792942
http://dx.doi.org/10.3389/fphar.2020.01091
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