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USE OF A PARALLEL ARTIFICIAL MEMBRANE SYSTEM TO EVALUATE PASSIVE ABSORPTION AND ELIMINATION IN SMALL FISH

机译:使用并行人工膜系统评估小鱼的被动吸收和消除

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摘要

A parallel artificial lipid membrane system was developed to mimic passive mass transfer of hydrophobic organic chemicals in fish. In this physical model system, a membrane filter—supported lipid bilayer separates two aqueous phases that represent the external and internal aqueous environments offish. To predict bioconcentration kinetics in small fish with this system, literature absorption and elimination rates were analyzed with an allometric diffusion model to quantify the mass transfer resistances in the aqueous and lipid phases of fish. The effect of the aqueous phase mass transfer resistance was controlled by adjusting stirring intensity to mimic bioconcentration rates in small fish. Twenty-three simple aromatic hydrocarbons were chosen as model compounds for purposes of evaluation. For most of the selected chemicals, literature absorption/elimination rates fall into the range predicted from measured membrane permeabilities and elimination rates of the selected chemicals determined by the diffusion model system.
机译:开发了一种平行的人工脂质膜系统,以模拟鱼类中疏水性有机化学物质的被动传质。在此物理模型系统中,膜滤膜支持的脂质双层将代表鱼的外部和内部水环境的两个水相分开。为了用该系统预测小鱼的生物浓缩动力学,使用异速扩散模型对文献的吸收和消除速率进行了分析,以量化鱼在水相和脂质相中的传质阻力。通过调节搅拌强度以模仿小鱼的生物浓缩率,可以控制水相传质阻力的影响。为了评估目的,选择了23种简单的芳香烃作为模型化合物。对于大多数选定的化学品,文献的吸收/消除速率落入由测得的膜渗透率和由扩散模型系统确定的选定化学品的消除速率所预测的范围内。

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