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雌二醇强化壬基酚雄性毒性机理研究
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Mechanisms of Enhancing Male Toxicity of Nonylphenol by 17-Estradiol
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    为了揭示壬基酚进入生物体内后对雄性的毒性作用机制,以典型天然激素雌二醇(E2)为代表,以大鼠睾丸支持细胞为对象,研究了壬基酚与E2共存时对雄性生殖细胞的毒性并考察了其作用机理.研究结果表明,壬基酚与E2均能促进睾丸支持细胞增殖,表现出较强的雄性毒性,混合后呈现明显的强化效应,比二者单独作用高.对细胞中特征蛋白-波形蛋白的检测发现,E2不影响波形蛋白的表达,壬基酚可提高其表达,而混合物可明显提高其表达.机理分析表明,在丝裂原活化蛋白激酶(MAPK)通路的3条通路中,ERK通路是E2强化壬基酚毒性的关键通路.壬基酚降低ERK蛋白的表达,E2轻微降低ERK蛋白的表达,混合后反而诱导ERK蛋白的表达.壬基酚能够显著诱导p-JNK蛋白、p38蛋白的表达,但与E2混合后,诱导作用减弱.转录因子分析表明,由于ERK通路被激活,壬基酚和E2混合物可极大地强化转录因子c-Myc蛋白和cyclinD1蛋白的表达.

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    In order to examine the male toxicity of nonylphenol after it enters the body, the estrogencity and potential mechanisms of mixture of nonylphenol and 17-Estradiol (E2), a typical natural estrin on rat sertoli cells, was studied. The results indicated that nonylphenol and E2 could promote the growth of sertoli cells, showing certain male toxicity, and their mixture showed significant enhancement effect. Furthermore, E2 did not impact the expression of vimentin protein, a key protein in sertoli cells. Nonylphenol increased its expression, and the mixture significantly increased its expression. Mechanism study showed that, among the three pathways of MAPK channel, ERK protein was the key for E2 enhancing nonylphenol male toxicity. Both nonylphenol and E2 decreased the expression of ERK protein, but the mixture increased its expression. Nonylphenol noticeably promoted the expression of p-JNK protein and p38 protein, which was weakened when mixed with E2. Consequently, as the result of ERK channel activation, the mixture of nonylphenol and E2 significantly increased the expression of transcription factors, c-Myc proteins and cyclinD1 proteins.

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张盼月,张光明,郎朗.雌二醇强化壬基酚雄性毒性机理研究[J].湖南大学学报:自然科学版,2012,39(11):78~81

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