首页> 外文期刊>BioMed research international >Prepubertal Exposure to Genistein Alleviates Di-(2-ethylhexyl) Phthalate Induced Testicular Oxidative Stress in Adult Rats
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Prepubertal Exposure to Genistein Alleviates Di-(2-ethylhexyl) Phthalate Induced Testicular Oxidative Stress in Adult Rats

机译:预接受Genistein的接触可缓解成年大鼠邻苯二甲酸酯诱导的睾丸氧化胁迫

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摘要

Di-(2-ethylhexyl) phthalate (DEHP) is the most widely used plastizer in the world and can suppress testosterone production via activation of oxidative stress. Genistein (GEN) is one of the isoflavones ingredients exhibiting weak estrogenic and potentially antioxidative effects. However, study on reproductive effects following prepubertal multiple endocrine disrupters exposure has been lacking. In this study, DEHP and GEN were administrated to prepubertal male Sprague-Dawley rats by gavage from postnatal day 22 (PND22) to PND35 with vehicle control, GEN at 50 mg/kg body weight (bw)/day (G), DEHP at 50,150,450 mg/kgbw/day (D50, D150, D450) and their mixture (G + D50, G + D150, G + D450). On PND90, general morphometry (body weight, AGD, organ weight, and organ coefficient), testicular redox state, and testicular histology were studied. Our results indicated that DEHP could significantly decrease sex organs weight, organ coefficient, and testicular antioxidative ability, which largely depended on the dose of DEHP. However, coadministration of GEN could partially alleviate DEHP-induced reproductive injuries via enhancement of testicular antioxidative enzymes activities, which indicates that GEN has protective effects on DEHP-induced male reproductive system damage after prepubertal exposure and GEN may have promising future in its curative antioxidative role for reproductive disorders caused by other environmental endocrine disruptors.
机译:邻苯二甲酸酯(2-乙基己基)是世界上使用最广泛使用的塑料,可以通过激活氧化应激来抑制睾酮产生。 Genistein(Gen)是具有薄弱雌激素和潜在抗氧化作用的异黄酮成分之一。然而,缺乏预接种多个内分泌破坏者曝光后的生殖效应的研究。在本研究中,DeHP和Gen通过从后期第22天(PND22)的Gavage向Pnubertal雄性Sprague-Dawley大鼠提供给PND35,与载体对照,在50mg / kg体重(BW)/天(g),Dehp处50,150,450 mg / kgbw /天(d50,d150,d450)及其混合物(g + d50,g + d150,g + d450)。研究了PND90,研究了一般形态学(体重,AGD,器官重量和器官系数),睾丸氧化还原状态和睾丸组织学。我们的结果表明,DEHP可显着降低性器官重量,器官系数和睾丸抗氧化能力,这主要依赖于DEHP的剂量。然而,Gen的共同性可以通过增强睾丸抗氧化酶活性的增强部分缓解Dehp诱导的生殖损伤,这表明在预接种抗氧化作用中可能具有有希望的未来,Gen对Dehp诱导的男性生殖系统损坏具有保护作用对于由其他环境内分泌破坏器引起的生殖障碍。

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