Suppr超能文献

溴酚类物质既存在于海洋生物中,也存在于工业阻燃剂中,会干扰神经内分泌细胞(PC12)中的细胞钙离子信号传导。

Bromophenols, both present in marine organisms and in industrial flame retardants, disturb cellular Ca2+ signaling in neuroendocrine cells (PC12).

作者信息

Hassenklöver Thomas, Predehl Sabine, Pilli Jyotsna, Ledwolorz Jessica, Assmann Michael, Bickmeyer Ulf

机构信息

Students of Biology/Zoology at the University of Hamburg, Germany.

出版信息

Aquat Toxicol. 2006 Jan 5;76(1):37-45. doi: 10.1016/j.aquatox.2005.09.004. Epub 2005 Nov 2.

Abstract

Bromophenols are present in polychaetes as well as in algae in marine environments including the North Sea. They are thought to cause the typical sea-like taste and flavour. The ecological function of brominated phenols is not clear yet, but they may play a role in chemical defence and deterrence [Kicklighter, C.E., Kubaneck, J., Hay, M.E., 2004. Do brominated natural products defend marine worms from consumers? Some do, most don't. Limnol. Oceanogr. 49, 430-441]. Some brominated phenols are commercially used as industrial flame retardants as, e.g., 2,4,6-tribromophenol and are suspected to disrupt the humoral system by showing thyroid hormone-like activity [Legler, I., Brouwer, A., 2003. Are brominated flame retardants endocrine disruptors? Environ. Int. 29, 879-885]. In this study 2-bromophenol (2-BP), 4-bromophenol (4-BP), 2,4-dibromophenol (2,4-DBP), 2,6-dibromophenol (2,6-DBP) and 2,4,6-tribromophenol (2,4,6-TBP), all of which are present in marine organisms, were tested. Especially 2,4-DBP and 2,4,6-TBP showed a significant effect on the Ca2+ homeostasis in endocrine cells (PC 12). The reduction of depolarization induced Ca2+ elevations by 2,4-DBP and 2,4,6-TBP and the increase of intracellular Ca2+ by both substances, partly released from intracellular stores, may suggest a link to the disrupting effect of endocrine systems by brominated phenols. 2,4-DBP was the most potent substance we tested in respect to inhibition of voltage dependent Ca2+ currents as revealed in whole cell patch clamp experiments. Brominated phenols disturb cellular Ca2+ signaling with differential efficacy, depending on the number and position of bromine.

摘要

溴酚存在于多毛纲动物以及包括北海在内的海洋环境中的藻类中。它们被认为会导致典型的海腥味。溴化酚的生态功能尚不清楚,但它们可能在化学防御和威慑中发挥作用[Kicklighter, C.E., Kubaneck, J., Hay, M.E., 2004. 溴化天然产物能保护海洋蠕虫免受捕食者侵害吗?有些能,大多数不能。《湖沼学与海洋学》49, 430 - 441]。一些溴化酚作为工业阻燃剂被商业使用,例如2,4,6 - 三溴酚,并且被怀疑通过表现出甲状腺激素样活性来扰乱体液系统[Legler, I., Brouwer, A., 2003. 溴化阻燃剂是内分泌干扰物吗?《环境国际》29, 879 - 885]。在本研究中,测试了2 - 溴酚(2 - BP)、4 - 溴酚(4 - BP)、2,4 - 二溴酚(2,4 - DBP)、2,6 - 二溴酚(2,6 - DBP)和2,4,6 - 三溴酚(2,4,6 - TBP),所有这些都存在于海洋生物中。特别是2,4 - DBP和2,4,6 - TBP对内分泌细胞(PC 12)中的Ca2 + 稳态有显著影响。2,4 - DBP和2,4,6 - TBP对去极化诱导的Ca2 + 升高的降低以及这两种物质使细胞内Ca2 + 增加(部分从细胞内储存释放),可能表明与溴化酚对内分泌系统的干扰作用有关。如全细胞膜片钳实验所示,就抑制电压依赖性Ca2 + 电流而言,2,4 - DBP是我们测试的最有效的物质。溴化酚以不同的效力扰乱细胞Ca2 + 信号传导,这取决于溴的数量和位置。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验