内分泌干扰物p,p'-滴滴涕可诱导大鼠出现具有Igf2表观遗传缺陷的跨代雄性生育能力受损。

Transgenerational impaired male fertility with an Igf2 epigenetic defect in the rat are induced by the endocrine disruptor p,p'-DDE.

作者信息

Song Yang, Wu Nanxiang, Wang Simeng, Gao Ming, Song Peng, Lou Jianlin, Tan Yufeng, Liu Kecheng

机构信息

Hygiene Institute in Zhejiang Academy of Medical Sciences, 182 Tianmushan Road, Hangzhou 310013, China

Hygiene Institute in Zhejiang Academy of Medical Sciences, 182 Tianmushan Road, Hangzhou 310013, China.

出版信息

Hum Reprod. 2014 Nov;29(11):2512-21. doi: 10.1093/humrep/deu208. Epub 2014 Sep 3.

Abstract

STUDY QUESTION

What are the epigenetic mechanisms underlying the transgenerational effect of p,p'-DDE on male fertility?

SUMMARY ANSWER

Impaired male fertility with an Igf2 epigenetic defect is transgenerationally inherited upon exposure of p,p'-DDE.

WHAT IS KNOWN ALREADY

p,p'-Dichlorodiphenoxydichloroethylene (p,p'-DDE) is one of the primary metabolite products of the ancestral organochlorine pesticide dichlorodiphenoxytrichloroethane. As it is a known anti-androgen endocrine disruptor, it could cause harmful effects on the male reproductive system.

STUDY DESIGN, SIZE, DURATION: Pregnant rats (F0) were administered with p,p'-DDE or corn oil at the critical time of testis development, i.e. from gestation days 8 to 15. Male and female rats of the F1 generation were mated with each other to produce F2 progeny. To reveal whether the transgenerational phenotype is produced by the maternal or paternal line, F3 progeny were generated by intercrossing control (C) and treated (DDE) males and females of the F2 generation according to the following groups: (i) C♂-C♀, (ii) DDE♂-DDE♀, (iii) DDE♂-C♀ and (iv) C♂-DDE♀.

PARTICIPANTS/MATERIALS, SETTING, METHODS: Mature sperm and testes were collected from male offspring of the F1-F3 generations for the examination of male fertility parameters, i.e. sperm count and motility, testis histology and apoptosis. Expression of the imprinted genes, H19 and Igf2, was detected by real-time PCR. Igf2 DMR2 methylation was analyzed by bisulfite genomic sequencing.

MAIN RESULTS AND THE ROLE OF CHANCE

Upon exposure of p,p'-DDE, the male F1 generation showed impaired male fertility and altered imprinted gene expression caused by Igf2 DMR2 hypomethylation. These defects were transferred to the F3 generation through the male germline.

LIMITATIONS, REASONS FOR CAUTION: This study has examined the effect of p,p'-DDE only on the sperm number and motility and the possible mechanism of Igf2 DMR2 methylation in vivo and thus has some limitations. Further investigation is necessary to focus on the epigenetic effects of p,p'-DDE at the genome level and to include a more detailed semen quality analysis including sperm morphology assessment.

WIDER IMPLICATIONS OF THE FINDINGS

Impaired male fertility with epigenetic alterations is transgenerationally inherited after environmental exposure of p,p'-DDE, posing significant implications in the etiology of male infertility.

STUDY FUNDING/COMPETING INTERESTS: The present research was supported by National Natural Science Fund for Young Scholar (81102161), the Natural Science Fund of Zhejiang Province (LY14H260004) and funding from the Health Department of Zhejiang Province (201475777). No competing interests are declared.

摘要

研究问题

p,p'-二氯二苯二氯乙烯(p,p'-DDE)对雄性生育能力产生跨代影响的表观遗传机制是什么?

简要回答

p,p'-DDE暴露会导致具有Igf2表观遗传缺陷的雄性生育能力受损,并跨代遗传。

已知信息

p,p'-二氯二苯二氯乙烯(p,p'-DDE)是第一代有机氯农药二氯二苯三氯乙烷的主要代谢产物之一。由于它是一种已知的抗雄激素内分泌干扰物,可能会对雄性生殖系统造成有害影响。

研究设计、规模、持续时间:在睾丸发育的关键时期,即妊娠第8至15天,给怀孕大鼠(F0)施用p,p'-DDE或玉米油。F1代的雄性和雌性大鼠相互交配产生F2代后代。为了揭示跨代表型是由母系还是父系产生的,根据以下分组,通过F2代的对照(C)和处理(DDE)雄性和雌性进行杂交产生F3代后代:(i)C♂-C♀,(ii)DDE♂-DDE♀,(iii)DDE♂-C♀和(iv)C♂-DDE♀。

参与者/材料、环境、方法:从F1 - F3代雄性后代中收集成熟精子和睾丸用于检查雄性生育参数,即精子数量和活力、睾丸组织学和细胞凋亡。通过实时PCR检测印记基因H19和Igf2的表达。通过亚硫酸氢盐基因组测序分析Igf2 DMR2甲基化。

主要结果及偶然性的作用

p,p'-DDE暴露后,雄性F1代显示出雄性生育能力受损以及由Igf2 DMR2低甲基化引起的印记基因表达改变。这些缺陷通过雄性生殖系传递到F3代。

局限性、谨慎的原因:本研究仅检查了p,p'-DDE对精子数量和活力的影响以及体内Igf2 DMR2甲基化的可能机制,因此存在一些局限性。有必要进一步研究聚焦于p,p'-DDE在基因组水平的表观遗传效应,并纳入更详细的精液质量分析,包括精子形态评估。

研究结果的更广泛影响

p,p'-DDE环境暴露后,具有表观遗传改变的雄性生育能力受损会跨代遗传,这对男性不育症的病因具有重要意义。

研究资金/竞争利益:本研究得到国家自然科学基金青年基金(81102161)、浙江省自然科学基金(LY14H260004)以及浙江省卫生厅资助(201475777)。未声明存在竞争利益。

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