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Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome

Obstructive sleep apnea (OSA), a common sleep disorder characterized by intermittent hypoxia and hypercapnia (IHC), increases atherosclerosis risk. However, the contribution of intermittent hypoxia (IH) or intermittent hypercapnia (IC) in promoting atherosclerosis remains unclear. Since gut microbio...

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Autores principales: Xue, Jin, Allaband, Celeste, Zhou, Dan, Poulsen, Orit, Martino, Cameron, Jiang, Lingjing, Tripathi, Anupriya, Elijah, Emmanuel, Dorrestein, Pieter C., Knight, Rob, Zarrinpar, Amir, Haddad, Gabriel G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060652/
https://www.ncbi.nlm.nih.gov/pubmed/33897472
http://dx.doi.org/10.3389/fphys.2021.663950
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author Xue, Jin
Allaband, Celeste
Zhou, Dan
Poulsen, Orit
Martino, Cameron
Jiang, Lingjing
Tripathi, Anupriya
Elijah, Emmanuel
Dorrestein, Pieter C.
Knight, Rob
Zarrinpar, Amir
Haddad, Gabriel G.
author_facet Xue, Jin
Allaband, Celeste
Zhou, Dan
Poulsen, Orit
Martino, Cameron
Jiang, Lingjing
Tripathi, Anupriya
Elijah, Emmanuel
Dorrestein, Pieter C.
Knight, Rob
Zarrinpar, Amir
Haddad, Gabriel G.
author_sort Xue, Jin
collection PubMed
description Obstructive sleep apnea (OSA), a common sleep disorder characterized by intermittent hypoxia and hypercapnia (IHC), increases atherosclerosis risk. However, the contribution of intermittent hypoxia (IH) or intermittent hypercapnia (IC) in promoting atherosclerosis remains unclear. Since gut microbiota and metabolites have been implicated in atherosclerosis, we examined whether IH or IC alters the microbiome and metabolome to induce a pro-atherosclerotic state. Apolipoprotein E deficient mice (ApoE(−/−)), treated with IH or IC on a high-fat diet (HFD) for 10 weeks, were compared to Air controls. Atherosclerotic lesions were examined, gut microbiome was profiled using 16S rRNA gene amplicon sequencing and metabolome was assessed by untargeted mass spectrometry. In the aorta, IC-induced atherosclerosis was significantly greater than IH and Air controls (aorta, IC 11.1 ± 0.7% vs. IH 7.6 ± 0.4%, p < 0.05 vs. Air 8.1 ± 0.8%, p < 0.05). In the pulmonary artery (PA), however, IH, IC, and Air were significantly different from each other in atherosclerotic formation with the largest lesion observed under IH (PA, IH 40.9 ± 2.0% vs. IC 20.1 ± 2.6% vs. Air 12.2 ± 1.5%, p < 0.05). The most differentially abundant microbial families (p < 0.001) were Peptostreptococcaceae, Ruminococcaceae, and Erysipelotrichaceae. The most differentially abundant metabolites (p < 0.001) were tauro-β-muricholic acid, ursodeoxycholic acid, and lysophosphoethanolamine (18:0). We conclude that IH and IC (a) modulate atherosclerosis progression differently in distinct vascular beds with IC, unlike IH, facilitating atherosclerosis in both aorta and PA and (b) promote an atherosclerotic luminal gut environment that is more evident in IH than IC. We speculate that the resulting changes in the gut metabolome and microbiome interact differently with distinct vascular beds.
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spelling pubmed-80606522021-04-23 Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome Xue, Jin Allaband, Celeste Zhou, Dan Poulsen, Orit Martino, Cameron Jiang, Lingjing Tripathi, Anupriya Elijah, Emmanuel Dorrestein, Pieter C. Knight, Rob Zarrinpar, Amir Haddad, Gabriel G. Front Physiol Physiology Obstructive sleep apnea (OSA), a common sleep disorder characterized by intermittent hypoxia and hypercapnia (IHC), increases atherosclerosis risk. However, the contribution of intermittent hypoxia (IH) or intermittent hypercapnia (IC) in promoting atherosclerosis remains unclear. Since gut microbiota and metabolites have been implicated in atherosclerosis, we examined whether IH or IC alters the microbiome and metabolome to induce a pro-atherosclerotic state. Apolipoprotein E deficient mice (ApoE(−/−)), treated with IH or IC on a high-fat diet (HFD) for 10 weeks, were compared to Air controls. Atherosclerotic lesions were examined, gut microbiome was profiled using 16S rRNA gene amplicon sequencing and metabolome was assessed by untargeted mass spectrometry. In the aorta, IC-induced atherosclerosis was significantly greater than IH and Air controls (aorta, IC 11.1 ± 0.7% vs. IH 7.6 ± 0.4%, p < 0.05 vs. Air 8.1 ± 0.8%, p < 0.05). In the pulmonary artery (PA), however, IH, IC, and Air were significantly different from each other in atherosclerotic formation with the largest lesion observed under IH (PA, IH 40.9 ± 2.0% vs. IC 20.1 ± 2.6% vs. Air 12.2 ± 1.5%, p < 0.05). The most differentially abundant microbial families (p < 0.001) were Peptostreptococcaceae, Ruminococcaceae, and Erysipelotrichaceae. The most differentially abundant metabolites (p < 0.001) were tauro-β-muricholic acid, ursodeoxycholic acid, and lysophosphoethanolamine (18:0). We conclude that IH and IC (a) modulate atherosclerosis progression differently in distinct vascular beds with IC, unlike IH, facilitating atherosclerosis in both aorta and PA and (b) promote an atherosclerotic luminal gut environment that is more evident in IH than IC. We speculate that the resulting changes in the gut metabolome and microbiome interact differently with distinct vascular beds. Frontiers Media S.A. 2021-04-08 /pmc/articles/PMC8060652/ /pubmed/33897472 http://dx.doi.org/10.3389/fphys.2021.663950 Text en Copyright © 2021 Xue, Allaband, Zhou, Poulsen, Martino, Jiang, Tripathi, Elijah, Dorrestein, Knight, Zarrinpar and Haddad. 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 Physiology
Xue, Jin
Allaband, Celeste
Zhou, Dan
Poulsen, Orit
Martino, Cameron
Jiang, Lingjing
Tripathi, Anupriya
Elijah, Emmanuel
Dorrestein, Pieter C.
Knight, Rob
Zarrinpar, Amir
Haddad, Gabriel G.
Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title_full Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title_fullStr Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title_full_unstemmed Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title_short Influence of Intermittent Hypoxia/Hypercapnia on Atherosclerosis, Gut Microbiome, and Metabolome
title_sort influence of intermittent hypoxia/hypercapnia on atherosclerosis, gut microbiome, and metabolome
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060652/
https://www.ncbi.nlm.nih.gov/pubmed/33897472
http://dx.doi.org/10.3389/fphys.2021.663950
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