首页> 外文期刊>Chemico-biological interactions >Effect of nonylphenol on serum testosterone levels and testicular steroidogenic enzyme activity in neonatal, pubertal, and adult rats.
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Effect of nonylphenol on serum testosterone levels and testicular steroidogenic enzyme activity in neonatal, pubertal, and adult rats.

机译:壬基酚对新生,青春期和成年大鼠血清睾丸激素水平和睾丸类固醇生成酶活性的影响。

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摘要

Previous dose range-finding studies with nonylphenol (NP) administered to rats in a soy- and alfalfa-free diet showed apparent feminization of several endpoints in male rats at doses of 25 ppm and above. One possible mechanism contributing to these effects is a reduction of testosterone at critical developmental periods. The present study was conducted as an adjunct to a multigeneration study and was designed to examine the effect of NP on testosterone production. Male rats in the F1 and F2 generations were exposed through their dams or directly to various dietary doses of NP (0, 25, 200 and 750 ppm) throughout gestation and until sacrifice at either postnatal day 2 (PND2), PND50, or PND140. Male pups in the F3 generation were examined only on PND2. At PND2, serum testosterone levels were significantly decreased in all groups exposed to NP in the F1 generation, but not in the F2 or F3 generations. The activity of 17alpha-hydroxylase/C17, 20 lyase (P450c17) in PND2 testicular homogenates was not affected by NP treatment. In F1 and F2 PND50 and PND140 rats, NP treatment did not affect serum testosterone levels. The absolute dorsolateral prostate weight was increased in the 200 and 750 ppm dose groups only in the F1 PND50 rats, however, no significant effects were observed in other male reproductive organs. NP treatment did not affect P450c17 activity in microsomes prepared from testes of F1 PND50 or PND140 rats. However, P450c17 activity was significantly decreased in testicular microsomes of F(2) PND50 (200 and 750 ppm dose groups) and PND140 (25, 200, and 750 ppm dose groups) rats. A decrease in testicular beta-nicotinamide adenine dinucleotide phosphate (NADPH) P450 reductase was also observed in all PND50 and PND140 NP-exposed rats of the F1 and F2 generations. The ability of NP to directly inhibit P450c17 activity in vitro at concentrations of 1-100 microM was also demonstrated. These results indicate that NP can inhibit the activity of enzymes involved in testosterone synthesis, but suggest minimal effects on testosterone or testosterone-dependent endpoints via this mechanism.
机译:先前在不含大豆和苜蓿的饮食中对壬基酚(NP)给予大鼠的剂量范围研究表明,雄性大鼠在25 ppm及以上的剂量下,多个终点均明显女性化。促成这些作用的一种可能的机制是在关键的发育时期减少睾丸激素。本研究是多代研究的补充,旨在检查NP对睾丸激素产生的影响。 F1和F2代的雄性大鼠在整个妊娠期间都通过大坝或直接暴露于各种饮食剂量的NP(0、25、200和750 ppm)暴露,直到在出生后第2天(PND2),PND50或PND140处死。仅在PND2上检查了F3代中的雄性幼崽。在PND2,在F1代中暴露于NP的所有组的血清睾丸激素水平均显着降低,而在F2或F3代中则没有。 NP处理不影响PND2睾丸匀浆中17α-羟化酶/ C17、20裂合酶(P450c17)的活性。在F1和F2 PND50和PND140大鼠中,NP治疗不影响血清睾丸激素水平。仅在F1 PND50大鼠中,在200和750 ppm剂量组中,背外侧绝对前列腺重量增加,但是,在其他雄性生殖器官中未观察到明显的影响。 NP处理不会影响从F1 PND50或PND140大鼠睾丸制备的微粒体中P450c17的活性。但是,在F(2)PND50(200和750 ppm剂量组)和PND140(25、200和750 ppm剂量组)大鼠的睾丸微粒体中,P450c17活性显着降低。在所有F1和F2代PND50和PND140 NP暴露的所有大鼠中,也观察到睾丸β-烟酰胺腺嘌呤二核苷酸磷酸(NADPH)P450还原酶的减少。还证明了在1-100 microM的浓度下NP在体外直接抑制P450c17活性的能力。这些结果表明,NP可以抑制睾丸激素合成中涉及的酶的活性,但是通过这种机制对睾丸激素或睾丸激素依赖性终点的影响极小。

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