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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 >Iprodione delays male rat pubertal development, reduces serum testosterone levels, and decreases ex vivo testicular testosterone production.
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Iprodione delays male rat pubertal development, reduces serum testosterone levels, and decreases ex vivo testicular testosterone production.

机译:异丙洛酮可延缓雄性大鼠青春期发育,降低血清睾丸激素水平,并降低离体睾丸睾丸激素的产生。

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摘要

Iprodione (IPRO) is a dichlorophenyl dicarboximide fungicide similar to procymidone and vinclozolin. All three of these fungicides induce Leydig cell tumors in the rat testis in long-term studies and an endocrine mode of action has been hypothesized to mediate this effect. Although both procymidone and vinclozolin antagonize the androgen receptor (AR) in vitro and in vivo, IPRO does not appear to be an AR antagonist. We proposed that pubertal exposure to IPRO would delay male rat pubertal development and reduce testosterone production within the testis. Sprague-Dawley weanling rats were dosed by gavage with 0, 50, 100, or 200mg/kg/day of IPRO from post-natal day (PND) 23 to 51/52. The onset of puberty (progression of preputial separation (PPS)) was measured starting on PND 37. Organ weights, serum hormones, and ex vivo testis steroid hormone production under stimulated (+human chorionic gonadotropin (hCG)) and unstimulated (-hCG) conditions were measured at necropsy. IPRO delayed PPS at 100 and 200mg/kg/day and decreased androgen sensitive seminal vesicle and epididymides weights at 200mg/kg/day. Furthermore, IPRO increased adrenal and liver weights at 200mg/kg/day, presumably by different mechanism(s) of action. Serum testosterone levels were decreased along with serum 17alpha-hydroxyprogesterone and androstenedione whereas serum LH was unaffected. IPRO reduced ex vivo testis production of testosterone and progesterone. Taken together, these results suggest that IPRO affects steroidogenesis within the testis, not through disruption of LH signaling, but possibly through enzyme inhibition of the steroidogenic pathway before CYP17. These data, along with the reported failure of IPRO to elicit an AR antagonism in vitro, provide evidence that IPRO differs from the dicarboximides procymidone and vinclozolin in that the effects on male rat pubertal development result from an inhibition of steroidogenesis and not AR antagonism.
机译:异丙隆(IPRO)是一种二氯苯基二羧酰亚胺杀真菌剂,与嘧啶酮和长春新唑灵相似。在长期研究中,所有这三种杀真菌剂均在大鼠睾丸中诱导Leydig细胞肿瘤,并且已假设一种内分泌作用模式可介导这种作用。尽管脯氨酰胺和长春新唑灵在体外和体内均能拮抗雄激素受体(AR),但IPRO似乎不是AR拮抗剂。我们建议青春期接触IPRO会延迟雄性大鼠青春期发育并减少睾丸内睾丸激素的产生。从出生后第23天至51/52天,通过管饲法对Sprague-Dawley断奶大鼠给药0、50、100或200mg / kg /天的IPRO。从PND 37开始测量青春期的发作(前分离的进展(PPS))。在刺激(+人绒毛膜促性腺激素(hCG))和未刺激(-hCG)下,器官重量,血清激素和离体睾丸类固醇激素的产生。尸检时测量病情。 IPRO以100和200mg / kg / day的剂量延迟PPS,以200mg / kg / day的剂量降低雄激素敏感的精囊和附睾的重量。此外,据推测,通过不同的作用机制,IPRO以200mg / kg /天的剂量增加肾上腺和肝脏的重量。血清睾丸激素水平与血清​​17α-羟孕酮和雄烯二酮一起降低,而血清LH则不受影响。 IPRO减少了睾丸和孕酮的离体睾丸生成。综上所述,这些结果表明,IPRO影响睾丸内类固醇生成,不是通过破坏LH信号传导,而是通过在CYP17之前抑制类固醇生成途径的酶。这些数据以及所报告的IPRO在体外未能引起AR拮抗作用的证据,提供了IPRO与双羧酰亚胺嘧啶酮和长春唑啉的不同之处在于,对雄性大鼠青春期发育的影响是由类固醇生成而不是AR拮抗引起的。

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