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The effect of pH on the toxicity of fatty acids and fatty acid amides to rainbow trout gill cells

机译:pH对脂肪酸和脂肪酸酰胺对虹鳟rainbow细胞毒性的影响

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Harmful algal blooms (HABs) expose aquatic organisms to multiple physical and chemical stressors during an acute time period. Algal toxins themselves may be altered by water chemistry parameters affecting their bioavailability and resultant toxicity. The purpose of this study was to determine the effects of two abiotic parameters (pH, inorganic metal salts) on the toxicity of fatty acid amides and fatty acids, two classes of lipids produced by harmful algae, including the golden alga, Prymnesium parvum, that are toxic to aquatic organisms. Rainbow trout gill cells were used as a model of the fish gill and exposed to single compounds and mixtures of compounds along with variations in pH level and concentration of inorganic metal salts. We employed artificial neural networks (ANNs) and standard ANOVA statistical analysis to examine and predict the effects of these abiotic parameters on the toxicity of fatty acid amides and fatty acids. Our results demonstrate that increasing pH levels increases the toxicity of fatty acid amides and inhibits the toxicity of fatty acids. This phenomenon is reversed at lower pH levels. Exposing gill cells to complex mixtures of chemical factors resulted in dramatic increases in toxicity compared to tests of single compounds for both the fatty acid amides and fatty acids. These findings highlight the potential of physicochemical factors to affect the toxicity of chemicals released during algal blooms and demonstrate drastic differences in the effect of pH on fatty acid amides and fatty acids
机译:有害藻华(HABs)在急性期内使水生生物面临多种物理和化学胁迫。水化学参数可能会影响藻毒素本身的生物利用率和所产生的毒性。这项研究的目的是确定两个非生物参数(pH,无机金属盐)对脂肪酸酰胺和脂肪酸毒性的影响,脂肪酸酰胺和脂肪酸是由有害藻类产生的两类脂质,包括金藻,小Pr(Pyrymnesium parvum),对水生生物有毒。虹鳟鱼g细胞被用作鱼g的模型,并暴露于单一化合物和化合物混合物以及pH值和无机金属盐浓度的变化。我们采用人工神经网络(ANN)和标准的ANOVA统计分析来检查和预测这些非生物参数对脂肪酸酰胺和脂肪酸毒性的影响。我们的结果表明,增加pH值会增加脂肪酸酰胺的毒性,并抑制脂肪酸的毒性。在较低的pH值下,这种现象会逆转。与测试单一化合物的脂肪酸酰胺和脂肪酸相比,将g细胞暴露于化学因素的复杂混合物中会导致毒性显着增加。这些发现突出了理化因素可能影响藻华期间释放的化学物质的毒性,并证明了pH对脂肪酸酰胺和脂肪酸的影响存在巨大差异。

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