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斑马鱼暴露于药物混合物时基因表达的反应:对环境风险的影响

Response of gene expression in zebrafish exposed to pharmaceutical mixtures: Implications for environmental risk.

作者信息

Aguirre-Martínez Gabriela V, Reinardy Helena C, Martín-Díaz M Laura, Henry Theodore B

机构信息

School of Biomedical and Biological Science, 411 Davy Building, University of Plymouth, Drake Circus, Plymouth PL4 8AA, United Kingdom; Health Science Faculty, Arturo Prat University, Casilla 121, 1110939 Iquique, Chile; Andalusian Center of Marine Science and Technology (CACYTMAR), Campus Universitario Puerto Real, 11510 Puerto Real, Cádiz, Spain.

School of Biomedical and Biological Science, 411 Davy Building, University of Plymouth, Drake Circus, Plymouth PL4 8AA, United Kingdom; Department of Arctic Technology, UNIS, Longyearbyen N-9171, Norway.

出版信息

Ecotoxicol Environ Saf. 2017 Aug;142:471-479. doi: 10.1016/j.ecoenv.2017.04.038. Epub 2017 Apr 28.

Abstract

Complex mixtures of pharmaceutical chemicals in surface waters indicate potential for mixture effects in aquatic organisms. The objective of the present study was to evaluate whether effects on target gene expression and enzymatic activity of individual substances at environmentally relevant concentrations were additive when mixed. Expression of zebrafish cytochrome P4501A (cyp1a) and vitellogenin (vtg) genes as well as activity of ethoxyresorufin-O-deethylase (EROD) were analyzed after exposure (96h) to caffeine-Caf, ibuprofen-Ibu, and carbamazepine-Cbz (0.05 and 5µM), tamoxifen-Tmx (0.003 and 0.3µM), and after exposure to pharmaceutical mixtures (low mix: 0.05µM of Caf, Ibu, Cbz and 0.003µM of Tmx, and high mix: 5µM of Caf, Ibu, Cbz and 0.3µM of Tmx). Pharmaceuticals tested individually caused significant down regulation of both cyp1a and vtg, but EROD activity was not affected. Exposure to low mix did not cause a significant change in gene expression; however, the high mix caused significant up-regulation of cyp1a but did not affect vtg expression. Up-regulation of cyp1a was consistent with induction of EROD activity in larvae exposed to high mix. The complex mixture induced different responses than those observed by the individual substances. Additive toxicity was not supported, and results indicate the need to evaluate complex mixtures rather than models based on individual effects, since in environment drugs are not found in isolation and the effects of their mixtures is poorly understood.

摘要

地表水中复杂的药物化学混合物表明对水生生物存在混合效应的可能性。本研究的目的是评估在环境相关浓度下,混合时单一物质对靶基因表达和酶活性的影响是否具有加和性。在暴露(96小时)于咖啡因(Caf)、布洛芬(Ibu)、卡马西平(Cbz)(0.05和5μM)、他莫昔芬(Tmx)(0.003和0.3μM)后,以及暴露于药物混合物(低混合组:0.05μM的Caf、Ibu、Cbz和0.003μM的Tmx,高混合组:5μM的Caf、Ibu、Cbz和0.3μM的Tmx)后,分析斑马鱼细胞色素P4501A(cyp1a)和卵黄蛋白原(vtg)基因的表达以及乙氧基异吩恶唑酮 - O - 脱乙基酶(EROD)的活性。单独测试的药物导致cyp1a和vtg均显著下调,但EROD活性未受影响。暴露于低混合组未导致基因表达的显著变化;然而,高混合组导致cyp1a显著上调,但未影响vtg表达。cyp1a的上调与暴露于高混合组的幼虫中EROD活性的诱导一致。复杂混合物诱导的反应与单一物质观察到的不同。不支持加和毒性,结果表明需要评估复杂混合物而非基于单一效应的模型,因为在环境中药物并非单独存在,且对其混合物的影响了解甚少。

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