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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Role of epigenetic regulation of Igf2 and H19 in 2,3,7,8-Tetrachlorobenzo-p-dioxin (TCDD)-induced ovarian toxicity in offspring rats
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Role of epigenetic regulation of Igf2 and H19 in 2,3,7,8-Tetrachlorobenzo-p-dioxin (TCDD)-induced ovarian toxicity in offspring rats

机译:IGF2和H19在2,3,7,8-四氯苯-P-二辛(TCDD)诱导后代大鼠卵巢毒性中的作用

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2,3,7,8-Tetrachlorobenzo-p-dioxin (TCDD) exposure during embryonic gonadal sex determination had been demonstrated to harm the ovarian development. However, its mechanism was unclear and possibly related to epigenetic regulation. In the present study, the pregnant rats were treated with TCDD (100 ng/kg/day or 500 ng/kg/day) or only vehicle and corn oil on the day 8-14 of gestation through the gavage with a stainless-steel feeding needle. The vaginal opening time and estrous cycle of female offspring rats (F1) were monitored twice a day. The ovarian histology, follicle count, real-time PCR, Western Blotting and DNA methylation analysis for Igf2 and H19 were carried out. The results showed that maternal TCDD exposure disrupted estrous cyclicity, resulted in aberrant concentration of serum E2 and FSH, and affected the number of primordial follicles, secondary follicles and corpus luteum. However, TCDD had no effect on the number of primary follicles and atresia follicles. Furthermore, the mRAN expression of imprinted genes Igf2 and H19 was down-regulated, and the IGF2 protein was also down-regulated. TCDD exposure did not alter the mean methylation rate of Igf2 DMR2 and H19 ICR, and only some CpG sites throughout them were hypermethylated in high-dose TCDD rats. In conclusion, maternal exposure of TCDD could affect the ovary development and functions which were possibly associated with down-regulation expression of IGF2 and H19. However, it was not entirely clear whether the impairment of ovary by TCDD was related to the methylation pattern of Igf2 and H19 ICR.
机译:2,3,7,8-四氯苯深酶 - 二恶英(TCDD)在胚胎性交性别测定期间暴露于患有卵巢发育。然而,其机制尚不清楚,可能与表观遗传调节有关。在本研究中,将孕大鼠用TCDD(100ng / kg /天或500ng / kg /天)或仅在妊娠的第8-14天通过饲喂的妊娠,用不锈钢饲料进行妊娠针。阴道开口时间和雌性后代大鼠(F1)的溶解循环每天进行两次监测。进行卵巢组织学,卵泡数,实时PCR,IGF2和H19的蛋白质印迹和DNA甲基化分析。结果表明,母体TCDD曝光破坏了骨性循环性,导致血清E2和FSH的异常浓度,并影响原始卵泡,二级卵泡和胶质组织的数量。然而,TCDD对初级卵泡和Atresia卵泡的数量没有影响。此外,下调印迹基因IGF2和H19的MRAN表达,并且IGF2蛋白也被下调。 TCDD暴露未改变IGF2 DMR2和H19 ICR的平均甲基化率,并且在高剂量TCDD大鼠中仅综合它们的一些CPG位点是高剂量的。总之,TCDD的母体暴露可能影响卵巢发育和功能,这可能与IGF2和H19的下调表达有关。但是,并不完全清楚卵巢对卵巢的损伤是否与IGF2和H19 ICR的甲基化模式有关。

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