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Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone

Acute and chronic exposure to arsenic and mercury is known to produce vasoconstriction. There is, however, no clarity concerning the pathways leading to this increased contraction. In this study we elicit and compare maximum contractility of rat aortas under resting conditions in the presence of ars...

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Autores principales: Kundu, Swati, Shabir, Hiba, Basir, Seemi Farhat, Khan, Luqman Ahmad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japan Society of Smooth Muscle Research 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5137271/
https://www.ncbi.nlm.nih.gov/pubmed/25891766
http://dx.doi.org/10.1540/jsmr.50.93
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author Kundu, Swati
Shabir, Hiba
Basir, Seemi Farhat
Khan, Luqman Ahmad
author_facet Kundu, Swati
Shabir, Hiba
Basir, Seemi Farhat
Khan, Luqman Ahmad
author_sort Kundu, Swati
collection PubMed
description Acute and chronic exposure to arsenic and mercury is known to produce vasoconstriction. There is, however, no clarity concerning the pathways leading to this increased contraction. In this study we elicit and compare maximum contractility of rat aortas under resting conditions in the presence of arsenic and mercury, and delineate pathways mediating this effect. Phenylephrine (PE) induced hypercontraction of 37% and 32% were obtained when isolated aortic segments were exposed to 25 µM As(III) and 6 nM Hg(II), respectively. Isometric contraction measurements in presence of apocynin, verapamil and sodium nitroprusside indicates that the major causes of increased contraction are reactive oxygen species (ROS) and depletion of nitric oxide (NO). Calcium influx plays a minor role in arsenic and mercury caused hypercontraction. In unexposed aorta, eugenol causes relaxation by inhibiting ROS and elevating NO, linalool by blocking voltage dependent calcium channel (VDCC) and elevating NO, and carvone by blocking calcium influx through VDDC. Since the arsenic and mercury hypercontraction is mediated by increased ROS and depleted NO, we hypothesize that molecules which neutralize ROS or elevate NO will be better ameliorators. In line with this argument, we found eugenol to be the best ameliorator of arsenic and mercury hypercontraction followed by linalool and carvone.
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spelling pubmed-51372712017-02-14 Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone Kundu, Swati Shabir, Hiba Basir, Seemi Farhat Khan, Luqman Ahmad J Smooth Muscle Res Original Acute and chronic exposure to arsenic and mercury is known to produce vasoconstriction. There is, however, no clarity concerning the pathways leading to this increased contraction. In this study we elicit and compare maximum contractility of rat aortas under resting conditions in the presence of arsenic and mercury, and delineate pathways mediating this effect. Phenylephrine (PE) induced hypercontraction of 37% and 32% were obtained when isolated aortic segments were exposed to 25 µM As(III) and 6 nM Hg(II), respectively. Isometric contraction measurements in presence of apocynin, verapamil and sodium nitroprusside indicates that the major causes of increased contraction are reactive oxygen species (ROS) and depletion of nitric oxide (NO). Calcium influx plays a minor role in arsenic and mercury caused hypercontraction. In unexposed aorta, eugenol causes relaxation by inhibiting ROS and elevating NO, linalool by blocking voltage dependent calcium channel (VDCC) and elevating NO, and carvone by blocking calcium influx through VDDC. Since the arsenic and mercury hypercontraction is mediated by increased ROS and depleted NO, we hypothesize that molecules which neutralize ROS or elevate NO will be better ameliorators. In line with this argument, we found eugenol to be the best ameliorator of arsenic and mercury hypercontraction followed by linalool and carvone. Japan Society of Smooth Muscle Research 2015-04-17 2014 /pmc/articles/PMC5137271/ /pubmed/25891766 http://dx.doi.org/10.1540/jsmr.50.93 Text en ©2014 The Japan Society of Smooth Muscle Research http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License.
spellingShingle Original
Kundu, Swati
Shabir, Hiba
Basir, Seemi Farhat
Khan, Luqman Ahmad
Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title_full Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title_fullStr Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title_full_unstemmed Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title_short Inhibition of As(III) and Hg(II) caused aortic hypercontraction by eugenol, linalool and carvone
title_sort inhibition of as(iii) and hg(ii) caused aortic hypercontraction by eugenol, linalool and carvone
topic Original
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5137271/
https://www.ncbi.nlm.nih.gov/pubmed/25891766
http://dx.doi.org/10.1540/jsmr.50.93
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