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首页> 外文期刊>Journal of Hazardous Materials >Exposure to bisphenol analogues interrupts growth, proliferation, and fatty acid compositions of protozoa Tetrahymena thermophila
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Exposure to bisphenol analogues interrupts growth, proliferation, and fatty acid compositions of protozoa Tetrahymena thermophila

机译:暴露于双酚类似物中断原生动物Tetrahymena Heathophila的生长,增殖和脂肪酸组成

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摘要

A number of bisphenol A (BPA) analogues are increasingly used as its industrial alternatives. However, their effects on aquatic organisms at both individual and population levels have not been well understood. In this study, effects of five bisphenol analogues (i.e., BPA, BPAF, BPB, BPE and BPS) were investigated by using the unicellular eukaryote Tetrahymena thermophila as a model organism. All of them inhibited individual growth and population proliferation at a concentration of 2.6 mu M or 13.0 mu M during the 60-h exposure period, with the population suppression capacity ranked as: BPB BPA approximate to BPAF BPE BPS. These analogues also exhibited chemical-specific disruption of fatty acid profiles in single-cell eukaryotes and the transcriptional levels of enzymes involved in fatty acid metabolism/biosynthesis. For example, exposure to BPA and BPE significantly increased the ratio of saturated fatty acids to unsaturated fatty acids, contrary to the desaturation effects exhibited by BPAF and BPB. Overall, our results clearly indicated that these bisphenol analogues could pose chemical-specific effects on low-trophic level aquatic organisms, particularly disruption of endogenous metabolic balances. Selected analogues (i.e., BPB and BPAF) could result in effects similar to or even greater than that of BPA.
机译:许多双酚A(BPA)类似物越来越多地用作其工业替代品。然而,它们对个人和人口水平的对水生生物的影响并未得到很好的理解。在该研究中,通过使用单细胞真核生物Tetrahymena Thermophila作为模型生物,研究了五种双酚类似物(即,,BPA,BPAF,BPB,BPE和BPS)的影响。在60-H暴露期间,所有这些抑制了浓度为2.6μm或13.0μm的个体生长和群体增殖,群体抑制能力排名为:BPB> BPA近似于BPAF> BPS> BPS。这些类似物还表现出单细胞真核生物中脂肪酸谱的化学特异性破坏,以及参与脂肪酸代谢/生物合成的酶的转录水平。例如,暴露于BPA和BPE显着增加了饱和脂肪酸与不饱和脂肪酸的比例,这与BPAF和BPB表现出的去饱和效应相反。总体而言,我们的结果清楚地表明,这些双酚类似物可能对低营养水平水生生物体构成化学特异性影响,特别是内源性代谢余额的破坏。所选类似物(即,BPB和BPAF)可能导致类似于或甚至大于BPA的效果。

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