Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.

Previous studies have revealed the association of lead (Pb) exposure with obesity. DNA methylation alteration has been suggested to be one of the regulatory mechanisms of obesity. We aimed to explore whether Pb exposure is related with weight gain and DNA methylation alteration.Male adult 8 week Wis...

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Main Authors: Honglin Sun, Ningjian Wang, Xiaomin Nie, Li Zhao, Qin Li, Zhen Cang, Chi Chen, Meng Lu, Jing Cheng, Hualing Zhai, Fangzhen Xia, Lin Ye, Yingli Lu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5249225?pdf=render
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spelling doaj-78bfd95d207b4ee59254d83902fe93d82020-11-25T01:46:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01121e016995810.1371/journal.pone.0169958Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.Honglin SunNingjian WangXiaomin NieLi ZhaoQin LiZhen CangChi ChenMeng LuJing ChengHualing ZhaiFangzhen XiaLin YeYingli LuPrevious studies have revealed the association of lead (Pb) exposure with obesity. DNA methylation alteration has been suggested to be one of the regulatory mechanisms of obesity. We aimed to explore whether Pb exposure is related with weight gain and DNA methylation alteration.Male adult 8 week Wistar rats were divided into 5 groups: the normal chow diet (NCD); the NCD+0.05%Pb; the NCD+0.15%Pb; the NCD+0.45%Pb and the high fat diet. Rats were exposed to different dosages of Pb through drinking water for 21 weeks. Body weight, fasted blood glucose level, fasted insulin level, homeostasis assessment of insulin resistance (HOMA-IR) index and lipid profile were detected. Intra-peritoneal glucose tolerance test (IPGTT) was constructed to evaluate the glucose tolerance. Lipid accumulation of liver was detected and liver DNA underwent whole genome bisulfite sequencing.The NCD+0.05%Pb group had significantly greater weight, HOMA-IR and triglycerides, and lower glucose intolerance than the NCD group (P <0.05). This group also showed hepatic lipid accumulation. These metabolic changes were not observed in the other two Pb dosage groups. Furthermore, DNA hypermethylation extended along pathways related to glucose and lipid metabolism in NCD+0.05%Pb group.Pb exposure resulted in dose-specific weight gain in adult Wistar rats, accompanied by alteration of DNA methylation.http://europepmc.org/articles/PMC5249225?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Honglin Sun
Ningjian Wang
Xiaomin Nie
Li Zhao
Qin Li
Zhen Cang
Chi Chen
Meng Lu
Jing Cheng
Hualing Zhai
Fangzhen Xia
Lin Ye
Yingli Lu
spellingShingle Honglin Sun
Ningjian Wang
Xiaomin Nie
Li Zhao
Qin Li
Zhen Cang
Chi Chen
Meng Lu
Jing Cheng
Hualing Zhai
Fangzhen Xia
Lin Ye
Yingli Lu
Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
PLoS ONE
author_facet Honglin Sun
Ningjian Wang
Xiaomin Nie
Li Zhao
Qin Li
Zhen Cang
Chi Chen
Meng Lu
Jing Cheng
Hualing Zhai
Fangzhen Xia
Lin Ye
Yingli Lu
author_sort Honglin Sun
title Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
title_short Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
title_full Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
title_fullStr Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
title_full_unstemmed Lead Exposure Induces Weight Gain in Adult Rats, Accompanied by DNA Hypermethylation.
title_sort lead exposure induces weight gain in adult rats, accompanied by dna hypermethylation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Previous studies have revealed the association of lead (Pb) exposure with obesity. DNA methylation alteration has been suggested to be one of the regulatory mechanisms of obesity. We aimed to explore whether Pb exposure is related with weight gain and DNA methylation alteration.Male adult 8 week Wistar rats were divided into 5 groups: the normal chow diet (NCD); the NCD+0.05%Pb; the NCD+0.15%Pb; the NCD+0.45%Pb and the high fat diet. Rats were exposed to different dosages of Pb through drinking water for 21 weeks. Body weight, fasted blood glucose level, fasted insulin level, homeostasis assessment of insulin resistance (HOMA-IR) index and lipid profile were detected. Intra-peritoneal glucose tolerance test (IPGTT) was constructed to evaluate the glucose tolerance. Lipid accumulation of liver was detected and liver DNA underwent whole genome bisulfite sequencing.The NCD+0.05%Pb group had significantly greater weight, HOMA-IR and triglycerides, and lower glucose intolerance than the NCD group (P <0.05). This group also showed hepatic lipid accumulation. These metabolic changes were not observed in the other two Pb dosage groups. Furthermore, DNA hypermethylation extended along pathways related to glucose and lipid metabolism in NCD+0.05%Pb group.Pb exposure resulted in dose-specific weight gain in adult Wistar rats, accompanied by alteration of DNA methylation.
url http://europepmc.org/articles/PMC5249225?pdf=render
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