School of Life Sciences, University of Applied Sciences Northwestern Switzerland, Gründenstrasse 40, CH-4132 Muttenz, Switzerland.
Toxicol Appl Pharmacol. 2012 Sep 1;263(2):184-94. doi: 10.1016/j.taap.2012.06.008. Epub 2012 Jun 18.
Organic UV filters including benzophenone-3 (BP-3) are widely used to protect humans and materials from damage by UV irradiation. Despite the environmental occurrence of BP-3 in the aquatic environment, little is known about its effects and modes of action. In the present study we assess molecular and physiological effects of BP-3 in adult male zebrafish (Danio rerio) and in eleuthero-embryos by a targeted gene expression approach focusing on the sex hormone system. Fish and embryos are exposed for 14 days and 120 hours post fertilization, respectively, to 2.4-312 μg/L and 8.2-438 μg/L BP-3. Chemical analysis of water and fish demonstrates that BP-3 is partly transformed to benzophenone-1 (BP-1) and both compounds are accumulated in adult fish. Biotransformation to BP-1 is absent in eleuthero-embryos. BP-3 exposure leads to similar alterations of gene expression in both adult fish and eleuthero-embryos. In the brain of adult males esr1, ar and cyp19b are down-regulated at 84 μg/L BP-3. There is no induction of vitellogenin expression by BP-3, both at the transcriptional and protein level. An overall down-regulation of the hsd3b, hsd17b3, hsd11b2 and cyp11b2 transcripts is observed in the testes, suggesting an antiandrogenic activity. No histological changes were observed in the testes after BP-3 treatment. The study leads to the conclusion that low concentrations of BP-3 exhibit similar multiple hormonal activities at the transcription level in two different life stages of zebrafish. Forthcoming studies should show whether this translates to additional physiological effects.
有机紫外线滤光剂包括二苯甲酮-3(BP-3),被广泛用于保护人类和材料免受紫外线照射的伤害。尽管 BP-3 在水生环境中会发生环境排放,但对其影响和作用模式知之甚少。在本研究中,我们通过靶向基因表达方法评估 BP-3 在成年雄性斑马鱼(Danio rerio)和游离幼体中的分子和生理效应,该方法主要关注性激素系统。鱼和胚胎分别在受精后 14 天和 120 小时暴露于 2.4-312μg/L 和 8.2-438μg/L 的 BP-3 下。水和鱼的化学分析表明,BP-3 部分转化为二苯甲酮-1(BP-1),并且两种化合物都在成年鱼中积累。游离幼体中不存在 BP-1 的生物转化。BP-3 暴露导致成年鱼和游离幼体的基因表达都发生类似的改变。在成年雄性鱼的大脑中,esr1、ar 和 cyp19b 在 84μg/L 的 BP-3 下下调。BP-3 既没有诱导 vitellogenin 的转录表达,也没有诱导其蛋白表达。在睾丸中,hsg3b、hsd17b3、hsd11b2 和 cyp11b2 的转录物整体下调,表明具有抗雄激素活性。BP-3 处理后,睾丸未观察到组织学变化。该研究得出的结论是,低浓度的 BP-3 在两种不同的斑马鱼生命阶段的转录水平上表现出相似的多种激素活性。未来的研究应表明这是否转化为其他生理效应。