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首页> 外文期刊>The Science of the Total Environment >Differential toxicity of the UV-filters BP-3 and BP-4 in Chlamydomonas reinhardtii:A flow cytometric approach
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Differential toxicity of the UV-filters BP-3 and BP-4 in Chlamydomonas reinhardtii:A flow cytometric approach

机译:UV过滤器BP-3和BP-4在莱茵衣藻中的差异毒性:流式细胞术

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摘要

Due to the concern about the negative effects of exposure to sunlight, UV-filters are being introduced in all kind of cosmetic formulas. Wastewater treatment plants are not able to remove and/or degrade them; consequently they find their way into rivers, lakes and oceans. These chemicals are acquiring a concerning status due to their increasingly common use and the potential risk for the environment.Benzophenone-3 (BP-3) and Benzophenone-4 (BP-4) are broad-spectrum UV-filters used for the same purpose in personal care products, insecticides and plastic bags; however, after 96 h of exposure to several concentrations of these UV-filters, the growth of C. reinhardtii was more affected by BP-3 than by BP-4, being the 96 h-EC50 for growth 5 mg L-1 and 38 mg L-1, respectively. Based on these values Chlamydomonas reinhardtii cultures were exposed during 24 h to 2.5, 5 and 10 mg L-1 of BP-3 and 19, 38 and 76 mg L-1 of BP-4. A cytometric panel was carried out to evaluate the effect of sublethal concentrations of these UV-filters, thus several cytotoxicity biomarkers were analysed, including chlorophyll a fluorescence, viability, metabolic activity, oxidative stress, cytoplasmic and mitochondrial membrane potentials, and intracellular pH. BP-3 and BP-4 affect C. reinhardtii cells in a different way, showing differences for three of the examined parameters. Chlorophyll a fluorescence and mitochondrial membrane potential showed a significant increase (p 0.05) in BP-3 and a significant decrease in BP-4, whereas viability only decreased significantly in the highest concentrations of BP-3. Regarding to the other parameters analysed, a similar pattern of cytotoxicity was observed. Growth rate, vital population and metabolic activity (esterase activity) and intracellular pH decreased significantly and cytoplasmic membrane potential and ROS levels increased significantly in cultures exposed to both pollutants. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于担心暴露在阳光下的负面影响,各种化妆品配方中都引入了紫外线过滤剂。废水处理厂无法去除和/或降解废水;因此,他们进入了河流,湖泊和海洋。这些化学品由于其日益普遍的使用和对环境的潜在风险而受到关注。苯甲酮3(BP-3)和苯甲酮4(BP-4)是用于相同目的的广谱紫外线过滤剂用于个人护理产品,杀虫剂和塑料袋中;但是,在暴露于几种浓度的这些紫外线过滤剂96小时后,莱茵3号衣藻的生长受BP-3的影响比受BP-4的影响更大,这是5 mg L-1和38 mg / mL的96 h EC50。分别为L-1毫克。基于这些值,莱茵衣藻培养物在24小时内暴露于2.5、5和10mg L-1的BP-3和19、38和76mg L-1的BP-4。进行了细胞计数小组评估亚致死浓度的这些紫外线滤光片的影响,因此分析了几种细胞毒性生物标记物,包括叶绿素a荧光,生存力,代谢活性,氧化应激,细胞质和线粒体膜电位以及细胞内pH。 BP-3和BP-4以不同的方式影响莱茵衣藻细胞,显示出三个检测参数的差异。叶绿素a荧光和线粒体膜电位显示BP-3显着增加(p <0.05)和BP-4显着下降,而活力仅在最高浓度的BP-3时才显着下降。关于所分析的其他参数,观察到相似的细胞毒性模式。在暴露于两种污染物的培养物中,生长速率,重要种群和代谢活性(酯酶活性)以及细胞内pH显着降低,细胞质膜电位和ROS水平显着提高。 (C)2019 Elsevier B.V.保留所有权利。

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