首页> 外文期刊>Fertility and Sterility: Official Journal of the American Fertility Society, Pacific Coast Fertility Society, and the Canadian Fertility and Andrology Society >Effect of tamoxifen treatment on global and insulin-like growth factor 2-H19 locus-specific DNA methylation in rat spermatozoa and its association with embryo loss.
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Effect of tamoxifen treatment on global and insulin-like growth factor 2-H19 locus-specific DNA methylation in rat spermatozoa and its association with embryo loss.

机译:三苯氧胺对大鼠精子中全局和胰岛素样生长因子2-H19基因座特异性DNA甲基化的影响及其与胚胎丢失的关系。

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OBJECTIVE: To determine the effect of tamoxifen treatment on global and insulin-like growth factor 2-H19 imprinting control region (Igf2-H19 ICR)-specific DNA methylation in rat spermatozoa and analyze its association with postimplantation loss. DESIGN: Experimental prospective study. SETTING: Animal research and academic research facility. SUBJECT(S): Male and female 75-day-old Holtzman rats. INTERVENTION(S): Global and Igf2-H19 ICR-specific DNA methylation was analyzed in an epididymal sperm sample in control and tamoxifen-treated rats at a dose of 0.4 mg tamoxifen/kg/day. DNA methylation status was correlated to postimplantation loss in females mated with tamoxifen-treated males. MAIN OUTCOME MEASURE(S): Global sperm DNA methylation level, methylation status of Igf2-H19 ICR in sperm, postimplantation loss. RESULT(S): Tamoxifen treatment significantly reduced methylation at Igf2-H19 ICR in epididymal sperm. However, the global methylation level was not altered. A mating experiment confirmed a significant increase in postimplantation loss upon tamoxifen treatment and showed significant correlation with methylation at Igf2-H19 ICR. CONCLUSION(S): Reduced DNA methylation at Igf2-H19 ICR in rat spermatozoa upon tamoxifen treatment indicated a role of estrogen-associated signaling in the acquisition of paternal-specific imprints during spermatogenesis. In addition, association between DNA methylation and postimplantation loss suggests that errors in paternal imprints at Igf2-H19 ICR could affect embryo development.
机译:目的:研究他莫昔芬治疗对大鼠精子整体和胰岛素样生长因子2-H19印迹控制区(Igf2-H19 ICR)特异性DNA甲基化的影响,并分析其与植入后损失的关系。设计:实验性前瞻性研究。地点:动物研究和学术研究机构。受试者:雄性和雌性75天大的Holtzman大鼠。干预:在对照组和他莫昔芬治疗的大鼠的附睾精子样品中以0.4 mg他莫昔芬/ kg /天的剂量分析整体和Igf2-H19 ICR特异性DNA甲基化。与甲基他莫昔芬治疗的雄性交配的雌性中,DNA甲基化状态与植入后损失相关。主要观察指标:整体精子DNA甲基化水平,精子中Igf2-H19 ICR的甲基化状态,植入后损失。结果:他莫昔芬治疗明显降低附睾精子中Igf2-H19 ICR的甲基化。但是,总体甲基化水平没有改变。一项交配实验证实了他莫昔芬治疗后植入后损失的显着增加,并显示与Igf2-H19 ICR处的甲基化显着相关。结论:他莫昔芬治疗后大鼠精子中Igf2-H19 ICR的DNA甲基化水平降低,表明雌激素相关信号在精子发生过程中获得父系特异性烙印中的作用。此外,DNA甲基化和植入后丢失之间的关联表明,Igf2-H19 ICR的父亲印记中的错误可能会影响胚胎发育。

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