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揭示分子水平上的复杂反应:双酚 A、奥克立林和 2'-乙基己基 4-(二甲氨基)苯甲酸酯混合物对摇蚊的转录变化。

Unveiling complex responses at the molecular level: Transcriptional alterations by mixtures of bisphenol A, octocrylene, and 2'-ethylhexyl 4- (dimethylamino)benzoate on Chironomus riparius.

机构信息

Grupo de Biología y Toxicología Ambiental, Departamento de Física Matemática y de Fluidos, Universidad Nacional de Educación a Distancia, UNED, Senda Del Rey 9, 28040, Madrid, Spain.

Grupo de Biología y Toxicología Ambiental, Departamento de Física Matemática y de Fluidos, Universidad Nacional de Educación a Distancia, UNED, Senda Del Rey 9, 28040, Madrid, Spain.

出版信息

Ecotoxicol Environ Saf. 2020 Dec 15;206:111199. doi: 10.1016/j.ecoenv.2020.111199. Epub 2020 Sep 2.

Abstract

Living organisms are exposed to mixtures of pollutants in the wild. Inland aquatic ecosystems contain many compounds from different sources that pollute the water column and the sediment. However, majority of toxicological research is focused on the effects of single exposures to toxicants. Furthermore, studies have been principally oriented toward ecologically relevant effects of intoxication, and lack an analysis of the cellular and molecular mechanisms involved in the response to toxicants. Effects of single, binary, and ternary mixtures of three compounds, bisphenol A, octocrylene, and 2'-ethylhexyl 4- (dimethylamino)benzoate, were assessed using a Real-Time PCR array. Forty genes, and additional six reference genes, were included in the array. The genes were selected based on their association with hormone responses, detoxification mechanisms, the stress response, DNA repair, and the immune system. The study was performed on Chironomus riparius, a benthic dipteran with an essential role in the food web. Transcriptional responses were assessed both 24 and 96 h post-exposure, to determinate short- and medium-term cellular responses. Individual fourth instar larvae were exposed to 0.1 and 1 mg/L of each of the toxic compounds and compound mixtures. A weak response was detected at 24 h, which was stronger in larvae exposed to mixtures than to individual toxicants. The response at 96 h was complex and principally involved genes related to the endocrine system, detoxification mechanisms, and the stress response. Furthermore, exposure to mixtures of compounds altered the expression patterns of an increased number of genes than did individual compound exposures, which suggested complex interactions between compounds affected the regulation of transcriptional activity. The results obtained highlight the importance of analyzing the mechanisms involved in the response to mixtures of compounds over extended periods and offer new insights into the basis of the physiological responses to pollution.

摘要

生物在野外会接触到混合物污染物。内陆水生生态系统中含有许多来自不同来源的化合物,这些化合物会污染水柱和沉积物。然而,大多数毒理学研究都集中在单一暴露于毒物的影响上。此外,研究主要侧重于中毒的生态相关效应,而缺乏对参与毒物反应的细胞和分子机制的分析。使用实时 PCR 阵列评估了三种化合物双酚 A、奥克立林和 2'-乙基己基 4-(二甲基氨基)苯甲酸酯的单一、二元和三元混合物的影响。该阵列包含 40 个基因和另外 6 个参考基因。这些基因是根据它们与激素反应、解毒机制、应激反应、DNA 修复和免疫系统的关联选择的。该研究在摇蚊 Chironomus riparius 中进行,摇蚊是食物链中必不可少的底栖双翅目昆虫。在暴露后 24 和 96 小时评估转录反应,以确定短期和中期细胞反应。单独的第四龄幼虫暴露于每种有毒化合物和化合物混合物的 0.1 和 1 mg/L。在 24 小时时检测到弱反应,暴露于混合物中的幼虫的反应比暴露于单一毒物的幼虫更强。96 小时时的反应很复杂,主要涉及与内分泌系统、解毒机制和应激反应有关的基因。此外,与单独暴露于化合物相比,混合物暴露会改变更多基因的表达模式,这表明化合物之间的复杂相互作用会影响转录活性的调节。研究结果强调了分析对混合物化合物的反应机制的重要性,需要在较长时间内进行,并为了解对污染的生理反应的基础提供了新的见解。

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