首页> 外文期刊>The Journal of Urology >Exposure to genistein during gestation and lactation demasculinizes the reproductive system in rats.
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Exposure to genistein during gestation and lactation demasculinizes the reproductive system in rats.

机译:在妊娠和哺乳期间接触染料木黄酮会破坏大鼠生殖系统的男性化。

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PURPOSE: Exposure to the phytoestrogen genistein (Indofine Chemical Co., Somerville, New Jersey) can disrupt normal male sexual differentiation. To determine if perinatal (that is gestation and lactation) genistein exposure at doses common in human diets alters masculinization we examined the development of the external genitalia, testes, wolffian ducts and sexual behavior in male rats exposed to genistein supplemented diets during early development. MATERIALS AND METHODS: Female rats were fed a phytoestrogen-free diet supplemented with no genistein (free), a low genistein dose (low) or a high genistein dose (high) throughout gestation and lactation. Anogenital distance of male offspring was measured weekly from postnatal days 2 to 21. At puberty (postnatal day 40 to 45) preputial separation, and testis length and width of male offspring were measured. At age 70 days reproductive organ masses, plasma testosterone concentration, sperm counts and sexual behavior were assessed in male offspring.RESULTS Exposure to genistein resulted in temporary, prepubertal urogenital abnormalities at postnatal days 21 and 40. Males exposed to genistein had smaller anogenital distance and testis size, and delayed preputial separation. Perinatal exposure to genistein also caused long-term dysfunction in reproductive behavior, in which adult males exposed to genistein were less likely to mount, intromit and ejaculate during mating tests. Males exposed to genistein also had lower testosterone concentrations in adulthood. CONCLUSIONS: Perinatal genistein exposure results in transient and lasting alterations in masculinization of the reproductive system. These results extend our knowledge of the effects of early genistein exposure on male development and may have implications for human health in terms of potential relationships of endocrine disrupters and urogenital abnormalities thought to be increasing in incidence in boys and men.
机译:目的:暴露于植物雌激素染料木黄酮(Indofine Chemical Co.,萨默维尔,新泽西州)可以破坏正常的男性性别分化。为了确定以人类饮食中常见的剂量进行围产期(即妊娠和哺乳)染料木黄酮的暴露是否会改变男性化,我们检查了在早期发育期间暴露于染料木黄酮补充饮食的雄性大鼠的外部生殖器,睾丸,狼管和性行为的发育情况。材料与方法:雌性大鼠在整个妊娠和哺乳期均饲喂无植物雌激素的饮食,该饮食不含金雀异黄素(免费),金雀异黄素低剂量(低)或金雀异黄素高剂量(高)。从出生后第2至21天每周测量一次雄性后代的生殖器距离。在青春期(出生后第40至45天)进行包皮,并测量雄性后代的睾丸长度和宽度。在70岁时,对雄性后代的生殖器官肿块,血浆睾丸激素浓度,精子数量和性行为进行了评估。结果暴露于染料木黄酮会导致出生后21天和40天出现暂时的青春期前泌尿生殖道异常。睾丸大小,并延迟包皮分离。围产期接触到染料木黄酮还导致长期的生殖功能障碍,其中接触染料木黄酮的成年男性在交配试验中坐骑,内吸和射精的可能性较小。接触染料木黄酮的男性成年后睾丸激素浓度也较低。结论:围产期染料木黄酮的暴露导致生殖系统男性化的短暂而持久的改变。这些结果扩展了我们对早期染料木黄酮暴露对男性发育的影响的认识,并可能对内分泌干扰物和泌尿生殖道异常的潜在关系(对男孩和男性的发病率正在增加)产生影响,对人类健康具有影响。

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