Cargando…

Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome

The multi-generation heredity trait of hypertension in human has been reported, but the molecular mechanisms underlying multi-generational inheritance of hypertension remain obscure. Recent evidence shows that prenatal inflammatory exposure (PIE) results in increased incidence of cardiovascular dise...

Descripción completa

Detalles Bibliográficos
Autores principales: Guan, Xiao, Dan, Guo-rong, Yang, Yao, Ji, Yan, Lai, Wen-jing, Wang, Fang-jie, Meng, Meng, Mo, Bang-hui, Huang, Pei, You, Ting-ting, Deng, Ya-fei, Song, Liang, Guo, Wei, Yi, Ping, Yu, Jian-hua, Gao, Yuan, Shou, Wei-nian, Chen, Bing-bo, Deng, You-cai, Li, Xiao-hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Nature Singapore 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8482360/
https://www.ncbi.nlm.nih.gov/pubmed/34593973
http://dx.doi.org/10.1038/s41401-021-00772-8
_version_ 1784576886026797056
author Guan, Xiao
Dan, Guo-rong
Yang, Yao
Ji, Yan
Lai, Wen-jing
Wang, Fang-jie
Meng, Meng
Mo, Bang-hui
Huang, Pei
You, Ting-ting
Deng, Ya-fei
Song, Liang
Guo, Wei
Yi, Ping
Yu, Jian-hua
Gao, Yuan
Shou, Wei-nian
Chen, Bing-bo
Deng, You-cai
Li, Xiao-hui
author_facet Guan, Xiao
Dan, Guo-rong
Yang, Yao
Ji, Yan
Lai, Wen-jing
Wang, Fang-jie
Meng, Meng
Mo, Bang-hui
Huang, Pei
You, Ting-ting
Deng, Ya-fei
Song, Liang
Guo, Wei
Yi, Ping
Yu, Jian-hua
Gao, Yuan
Shou, Wei-nian
Chen, Bing-bo
Deng, You-cai
Li, Xiao-hui
author_sort Guan, Xiao
collection PubMed
description The multi-generation heredity trait of hypertension in human has been reported, but the molecular mechanisms underlying multi-generational inheritance of hypertension remain obscure. Recent evidence shows that prenatal inflammatory exposure (PIE) results in increased incidence of cardiovascular diseases, including hypertension. In this study we investigated whether and how PIE contributed to multi-generational inheritance of hypertension in rats. PIE was induced in pregnant rats by intraperitoneal injection of LPS or Poly (I:C) either once on gestational day 10.5 (transient stimulation, T) or three times on gestational day 8.5, 10.5, and 12.5 (persistent stimulation, P). Male offspring was chosen to study the paternal inheritance. We showed that PIE, irrespectively induced by LPS or Poly (I:C) stimulation during pregnancy, resulted in multi-generational inheritance of significantly increased blood pressure in rat descendants, and that prenatal LPS exposure led to vascular remodeling and vasoconstrictor dysfunction in both thoracic aorta and superior mesenteric artery of adult F2 offspring. Furthermore, we revealed that PIE resulted in global alteration of DNA methylome in thoracic aorta of F2 offspring. Specifically, PIE led to the DNA hypomethylation of G beta gamma (Gβγ) signaling genes in both the F1 sperm and the F2 thoracic aorta, and activation of PI3K/Akt signaling was implicated in the pathologic changes and dysregulated vascular tone of aortic tissue in F2 LPS-P offspring. Our data demonstrate that PIE reprogrammed DNA methylome of cells from the germline/mature gametes contributes to the development of hypertension in F2 PIE offspring. This study broadens the current knowledge regarding the multi-generation effect of the cumulative early life environmental factors on the development of hypertension.
format Online
Article
Text
id pubmed-8482360
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Springer Nature Singapore
record_format MEDLINE/PubMed
spelling pubmed-84823602021-09-30 Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome Guan, Xiao Dan, Guo-rong Yang, Yao Ji, Yan Lai, Wen-jing Wang, Fang-jie Meng, Meng Mo, Bang-hui Huang, Pei You, Ting-ting Deng, Ya-fei Song, Liang Guo, Wei Yi, Ping Yu, Jian-hua Gao, Yuan Shou, Wei-nian Chen, Bing-bo Deng, You-cai Li, Xiao-hui Acta Pharmacol Sin Article The multi-generation heredity trait of hypertension in human has been reported, but the molecular mechanisms underlying multi-generational inheritance of hypertension remain obscure. Recent evidence shows that prenatal inflammatory exposure (PIE) results in increased incidence of cardiovascular diseases, including hypertension. In this study we investigated whether and how PIE contributed to multi-generational inheritance of hypertension in rats. PIE was induced in pregnant rats by intraperitoneal injection of LPS or Poly (I:C) either once on gestational day 10.5 (transient stimulation, T) or three times on gestational day 8.5, 10.5, and 12.5 (persistent stimulation, P). Male offspring was chosen to study the paternal inheritance. We showed that PIE, irrespectively induced by LPS or Poly (I:C) stimulation during pregnancy, resulted in multi-generational inheritance of significantly increased blood pressure in rat descendants, and that prenatal LPS exposure led to vascular remodeling and vasoconstrictor dysfunction in both thoracic aorta and superior mesenteric artery of adult F2 offspring. Furthermore, we revealed that PIE resulted in global alteration of DNA methylome in thoracic aorta of F2 offspring. Specifically, PIE led to the DNA hypomethylation of G beta gamma (Gβγ) signaling genes in both the F1 sperm and the F2 thoracic aorta, and activation of PI3K/Akt signaling was implicated in the pathologic changes and dysregulated vascular tone of aortic tissue in F2 LPS-P offspring. Our data demonstrate that PIE reprogrammed DNA methylome of cells from the germline/mature gametes contributes to the development of hypertension in F2 PIE offspring. This study broadens the current knowledge regarding the multi-generation effect of the cumulative early life environmental factors on the development of hypertension. Springer Nature Singapore 2021-09-30 2022-06 /pmc/articles/PMC8482360/ /pubmed/34593973 http://dx.doi.org/10.1038/s41401-021-00772-8 Text en © The Author(s), under exclusive licence to CPS and SIMM 2021
spellingShingle Article
Guan, Xiao
Dan, Guo-rong
Yang, Yao
Ji, Yan
Lai, Wen-jing
Wang, Fang-jie
Meng, Meng
Mo, Bang-hui
Huang, Pei
You, Ting-ting
Deng, Ya-fei
Song, Liang
Guo, Wei
Yi, Ping
Yu, Jian-hua
Gao, Yuan
Shou, Wei-nian
Chen, Bing-bo
Deng, You-cai
Li, Xiao-hui
Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title_full Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title_fullStr Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title_full_unstemmed Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title_short Prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting DNA methylome
title_sort prenatal inflammation exposure-programmed hypertension exhibits multi-generational inheritance via disrupting dna methylome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8482360/
https://www.ncbi.nlm.nih.gov/pubmed/34593973
http://dx.doi.org/10.1038/s41401-021-00772-8
work_keys_str_mv AT guanxiao prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT danguorong prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT yangyao prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT jiyan prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT laiwenjing prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT wangfangjie prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT mengmeng prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT mobanghui prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT huangpei prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT youtingting prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT dengyafei prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT songliang prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT guowei prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT yiping prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT yujianhua prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT gaoyuan prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT shouweinian prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT chenbingbo prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT dengyoucai prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome
AT lixiaohui prenatalinflammationexposureprogrammedhypertensionexhibitsmultigenerationalinheritanceviadisruptingdnamethylome