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Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats

BACKGROUND: This study aimed to examine whether and how postnatal high‐fat diet had additional impact on promoting vascular dysfunction in the offspring exposed to prenatal hypoxia. METHODS AND RESULTS: Pregnant Sprague‐Dawley rats were randomly assigned to hypoxia (10.5% oxygen) or normoxia (21% O(...

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Autores principales: Li, Xiang, Feng, Xueqin, Lu, Likui, He, Axin, Liu, Bailin, Zhang, Yingying, Shi, Ruixiu, Liu, Yanping, Chen, Xueyi, Sun, Miao, Xu, Zhice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6349350/
https://www.ncbi.nlm.nih.gov/pubmed/30556291
http://dx.doi.org/10.1111/jcmm.14020
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author Li, Xiang
Feng, Xueqin
Lu, Likui
He, Axin
Liu, Bailin
Zhang, Yingying
Shi, Ruixiu
Liu, Yanping
Chen, Xueyi
Sun, Miao
Xu, Zhice
author_facet Li, Xiang
Feng, Xueqin
Lu, Likui
He, Axin
Liu, Bailin
Zhang, Yingying
Shi, Ruixiu
Liu, Yanping
Chen, Xueyi
Sun, Miao
Xu, Zhice
author_sort Li, Xiang
collection PubMed
description BACKGROUND: This study aimed to examine whether and how postnatal high‐fat diet had additional impact on promoting vascular dysfunction in the offspring exposed to prenatal hypoxia. METHODS AND RESULTS: Pregnant Sprague‐Dawley rats were randomly assigned to hypoxia (10.5% oxygen) or normoxia (21% O(2)) groups from gestation days 5‐21. A subset of male offspring was placed on a high‐fat diet (HF, 45% fat) from 4‐16 weeks of age. Prenatal hypoxia induced a decrease in birth weight. In offspring‐fed HF diet, prenatal hypoxia was associated with increased fasting plasma triglyceride, total cholesterol, free fatty acids, and low‐density lipoprotein‐cholesterol. Compared with the other three groups, prenatal hypoxic offspring with high‐fat diet showed a significant increase in blood pressure, phenylephrine‐mediated vasoconstrictions, L‐type voltage‐gated Ca2+ (Cav1.2) channel currents, and elevated mRNA and protein expression of Cav1.2 α1 subunit in mesenteric arteries or myocytes. The large‐conductance Ca2+‐activated K+ (BK) channels currents and the BK channel units (β1, not α‐subunits) were significantly increased in mesenteric arteries or myocytes in HF offspring independent of prenatal hypoxia factor. CONCLUSION: The results demonstrated that prenatal hypoxia followed by postnatal HF caused vascular dysfunction through ion channel remodelling in myocytes.
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spelling pubmed-63493502019-02-01 Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats Li, Xiang Feng, Xueqin Lu, Likui He, Axin Liu, Bailin Zhang, Yingying Shi, Ruixiu Liu, Yanping Chen, Xueyi Sun, Miao Xu, Zhice J Cell Mol Med Original Articles BACKGROUND: This study aimed to examine whether and how postnatal high‐fat diet had additional impact on promoting vascular dysfunction in the offspring exposed to prenatal hypoxia. METHODS AND RESULTS: Pregnant Sprague‐Dawley rats were randomly assigned to hypoxia (10.5% oxygen) or normoxia (21% O(2)) groups from gestation days 5‐21. A subset of male offspring was placed on a high‐fat diet (HF, 45% fat) from 4‐16 weeks of age. Prenatal hypoxia induced a decrease in birth weight. In offspring‐fed HF diet, prenatal hypoxia was associated with increased fasting plasma triglyceride, total cholesterol, free fatty acids, and low‐density lipoprotein‐cholesterol. Compared with the other three groups, prenatal hypoxic offspring with high‐fat diet showed a significant increase in blood pressure, phenylephrine‐mediated vasoconstrictions, L‐type voltage‐gated Ca2+ (Cav1.2) channel currents, and elevated mRNA and protein expression of Cav1.2 α1 subunit in mesenteric arteries or myocytes. The large‐conductance Ca2+‐activated K+ (BK) channels currents and the BK channel units (β1, not α‐subunits) were significantly increased in mesenteric arteries or myocytes in HF offspring independent of prenatal hypoxia factor. CONCLUSION: The results demonstrated that prenatal hypoxia followed by postnatal HF caused vascular dysfunction through ion channel remodelling in myocytes. John Wiley and Sons Inc. 2018-12-16 2019-02 /pmc/articles/PMC6349350/ /pubmed/30556291 http://dx.doi.org/10.1111/jcmm.14020 Text en © 2018 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Li, Xiang
Feng, Xueqin
Lu, Likui
He, Axin
Liu, Bailin
Zhang, Yingying
Shi, Ruixiu
Liu, Yanping
Chen, Xueyi
Sun, Miao
Xu, Zhice
Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title_full Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title_fullStr Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title_full_unstemmed Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title_short Prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular Cav1.2 channels in offspring rats
title_sort prenatal hypoxia plus postnatal high‐fat diet exacerbated vascular dysfunction via up‐regulated vascular cav1.2 channels in offspring rats
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6349350/
https://www.ncbi.nlm.nih.gov/pubmed/30556291
http://dx.doi.org/10.1111/jcmm.14020
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