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The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses

This study investigates whether a functional single nucleotide polymorphism of HMOX2 (heme oxygenase-2) (rs4786504 T>C) is involved in individual chemosensitivity to acute hypoxia, as assessed by ventilatory responses, in European individuals. These responses were obtained at rest and during subm...

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Autores principales: Fabries, Pierre, Drogou, Catherine, Sauvet, Fabien, Nespoulous, Olivier, Erkel, Marie-Claire, Marchandot, Vincent, Bouaziz, Walid, Lepetit, Benoît, Hamm-Hornez, Anne-Pia, Malgoyre, Alexandra, Koulmann, Nathalie, Gomez-Merino, Danielle, Chennaoui, Mounir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669423/
https://www.ncbi.nlm.nih.gov/pubmed/36405624
http://dx.doi.org/10.3389/fmed.2022.1000786
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author Fabries, Pierre
Drogou, Catherine
Sauvet, Fabien
Nespoulous, Olivier
Erkel, Marie-Claire
Marchandot, Vincent
Bouaziz, Walid
Lepetit, Benoît
Hamm-Hornez, Anne-Pia
Malgoyre, Alexandra
Koulmann, Nathalie
Gomez-Merino, Danielle
Chennaoui, Mounir
author_facet Fabries, Pierre
Drogou, Catherine
Sauvet, Fabien
Nespoulous, Olivier
Erkel, Marie-Claire
Marchandot, Vincent
Bouaziz, Walid
Lepetit, Benoît
Hamm-Hornez, Anne-Pia
Malgoyre, Alexandra
Koulmann, Nathalie
Gomez-Merino, Danielle
Chennaoui, Mounir
author_sort Fabries, Pierre
collection PubMed
description This study investigates whether a functional single nucleotide polymorphism of HMOX2 (heme oxygenase-2) (rs4786504 T>C) is involved in individual chemosensitivity to acute hypoxia, as assessed by ventilatory responses, in European individuals. These responses were obtained at rest and during submaximal exercise, using a standardized and validated protocol for exposure to acute normobaric hypoxia. Carriers of the ancestral T allele (n = 44) have significantly lower resting and exercise hypoxic ventilatory responses than C/C homozygous carriers (n = 40). In the literature, a hypoxic ventilatory response threshold to exercise has been identified as an independent predictor of severe high altitude-illness (SHAI). Our study shows that carriers of the T allele have a higher risk of SHAI than carriers of the mutated C/C genotype. Secondarily, we were also interested in COMT (rs4680 G > A) polymorphism, which may be indirectly involved in the chemoreflex response through modulation of autonomic nervous system activity. Significant differences are present between COMT genotypes for oxygen saturation and ventilatory responses to hypoxia at rest. In conclusion, this study adds information on genetic factors involved in individual vulnerability to acute hypoxia and supports the critical role of the ≪ O(2) sensor ≫ - heme oxygenase-2 - in the chemosensitivity of carotid bodies in Humans.
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spelling pubmed-96694232022-11-18 The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses Fabries, Pierre Drogou, Catherine Sauvet, Fabien Nespoulous, Olivier Erkel, Marie-Claire Marchandot, Vincent Bouaziz, Walid Lepetit, Benoît Hamm-Hornez, Anne-Pia Malgoyre, Alexandra Koulmann, Nathalie Gomez-Merino, Danielle Chennaoui, Mounir Front Med (Lausanne) Medicine This study investigates whether a functional single nucleotide polymorphism of HMOX2 (heme oxygenase-2) (rs4786504 T>C) is involved in individual chemosensitivity to acute hypoxia, as assessed by ventilatory responses, in European individuals. These responses were obtained at rest and during submaximal exercise, using a standardized and validated protocol for exposure to acute normobaric hypoxia. Carriers of the ancestral T allele (n = 44) have significantly lower resting and exercise hypoxic ventilatory responses than C/C homozygous carriers (n = 40). In the literature, a hypoxic ventilatory response threshold to exercise has been identified as an independent predictor of severe high altitude-illness (SHAI). Our study shows that carriers of the T allele have a higher risk of SHAI than carriers of the mutated C/C genotype. Secondarily, we were also interested in COMT (rs4680 G > A) polymorphism, which may be indirectly involved in the chemoreflex response through modulation of autonomic nervous system activity. Significant differences are present between COMT genotypes for oxygen saturation and ventilatory responses to hypoxia at rest. In conclusion, this study adds information on genetic factors involved in individual vulnerability to acute hypoxia and supports the critical role of the ≪ O(2) sensor ≫ - heme oxygenase-2 - in the chemosensitivity of carotid bodies in Humans. Frontiers Media S.A. 2022-11-03 /pmc/articles/PMC9669423/ /pubmed/36405624 http://dx.doi.org/10.3389/fmed.2022.1000786 Text en Copyright © 2022 Fabries, Drogou, Sauvet, Nespoulous, Erkel, Marchandot, Bouaziz, Lepetit, Hamm-Hornez, Malgoyre, Koulmann, Gomez-Merino and Chennaoui. https://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 Medicine
Fabries, Pierre
Drogou, Catherine
Sauvet, Fabien
Nespoulous, Olivier
Erkel, Marie-Claire
Marchandot, Vincent
Bouaziz, Walid
Lepetit, Benoît
Hamm-Hornez, Anne-Pia
Malgoyre, Alexandra
Koulmann, Nathalie
Gomez-Merino, Danielle
Chennaoui, Mounir
The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title_full The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title_fullStr The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title_full_unstemmed The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title_short The HMOX2 polymorphism contributes to the carotid body chemoreflex in European sea-level residents by regulating hypoxic ventilatory responses
title_sort hmox2 polymorphism contributes to the carotid body chemoreflex in european sea-level residents by regulating hypoxic ventilatory responses
topic Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669423/
https://www.ncbi.nlm.nih.gov/pubmed/36405624
http://dx.doi.org/10.3389/fmed.2022.1000786
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