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纳米颗粒富柴油废气对成年雄性小鼠睾丸酮生物合成的影响。

Effect of nanoparticle-rich diesel exhaust on testosterone biosynthesis in adult male mice.

机构信息

College of Animal Science and Technology, Nanjing Agricultural University, Nanjing, China.

出版信息

Inhal Toxicol. 2012 Aug;24(9):599-608. doi: 10.3109/08958378.2012.702140.

Abstract

The effect of nanoparticle-rich diesel exhaust (NR-DE) on the testicular function and factors related with the biosynthesis of testosterone gene expression were investigated in mice. Male C57BL/Jcl mice were exposed to clean air, low-dose NR-DE (Low NR-DE), high-dose NR-DE (High NR-DE) or filtered diesel exhaust (F-DE) for 8 weeks. We found that the mice exposed to High NR-DE had significantly higher testosterone levels than those in the control and F-DE groups. To determine the effects of NR-DE on testicular testosterone production, interstitial cells dissected from the male mice which were exposed to NR-DE, F-DE, or clean air for 8 weeks were incubated with or without human chorionic gonadotropin (hCG; 0.1 IU/mL) for 4 h. The concentrations of testosterone in the culture media were measured. The testosterone production was significantly increased in with or without hCG of High NR-DE exposed group, and significantly decreased in both with or without hCG of F-DE exposed groups. Moreover, several genes, which is associated with testicular cholesterol synthesis, HMG-CoA, LDL-R, SR-B1, PBR, and P450scc, P450 17α, and 17β-HSD were determined in the testis of adult male mice. The results showed High NR-DE exposure significantly increased the expression of these genes. Whereas, the levels in the F-DE exposure group returned to those in the control group, implicating that the nanoparticles in DE contribute to the observed reproductive toxicity. We conclude that enhancement of testosterone biosynthesis by NR-DE exposure may be regulated by increasing testicular enzymes of testosterone biosynthesis.

摘要

研究了富含纳米颗粒的柴油废气 (NR-DE) 对睾丸功能和与睾酮基因表达生物合成相关的因素的影响,将雄性 C57BL/Jcl 小鼠暴露于清洁空气、低剂量 NR-DE (Low NR-DE)、高剂量 NR-DE (High NR-DE) 或过滤后的柴油废气 (F-DE) 中 8 周。我们发现,暴露于 High NR-DE 的小鼠的睾酮水平明显高于对照组和 F-DE 组。为了确定 NR-DE 对睾丸睾酮产生的影响,将暴露于 NR-DE、F-DE 或清洁空气 8 周的雄性小鼠的间质细胞分离出来,用或不用人绒毛膜促性腺激素 (hCG; 0.1 IU/mL) 孵育 4 小时。测量培养物中睾酮的浓度。暴露于 High NR-DE 的小鼠,无论是否有 hCG,其睾酮产生均显著增加,而暴露于 F-DE 的小鼠,无论是否有 hCG,其睾酮产生均显著减少。此外,还测定了成年雄性小鼠睾丸中与睾丸胆固醇合成、HMG-CoA、LDL-R、SR-B1、PBR 和 P450scc、P450 17α 和 17β-HSD 相关的几个基因。结果表明,High NR-DE 暴露显著增加了这些基因的表达。然而,在 F-DE 暴露组中,这些基因的水平恢复到对照组水平,这表明 DE 中的纳米颗粒导致了观察到的生殖毒性。我们得出结论,NR-DE 暴露增强了睾丸睾酮生物合成酶,可能是通过增加睾酮生物合成来调节的。

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