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Mobilization of chrysene from soil in a model digestive system.

机译:在模型消化系统中从土壤中动员丙烯。

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Accurate estimates for the oral bioavailability of hydrophobic contaminants bound to solid matrices are challenging to obtain because of sorption to organic matter. The purpose of this research was to measure the bioavailability of [14C]chrysene sorbed to soil using an in vitro model of gastrointestinal digestion and absorption to a surrogate intestinal membrane, ethylene vinyl acetate (EVA) thin film. The [14C]chrysene moved rapidly from soil into the aqueous compartment and reached steady state within 2 h. Equilibrium was reached in the EVA film within 32 h. Aging the spiked soil for 6 or 12 months had no effect on chrysene mobilization. This was supported by the finding that the data best fit a one-compartment model. Despite significant decreases in [14C]chrysene mobilization when water or nonneutralized gastrointestinal fluids were used in place of the complete medium, the equilibrium concentration of [14C]chrysene in EVA film remained the same in all conditions. Thus, the driving force for uptake was the fugacity gradient between the aqueous phase and the EVA film. Cultured human enterocytes (human colorectal carcinoma cell line [Caco-2 cells]) had a higher lipid-normalized fugacity capacity than EVA film, but the elimination rate constants were the same, suggesting that the rate was controlled by the resistance of the unstirred aqueous layer at the membrane-water interface.
机译:由于对有机物的吸附,很难获得与固体基质结合的疏水性污染物的口服生物利用度的准确估计值。这项研究的目的是使用胃肠道消化和吸收至替代肠膜乙烯乙酸乙烯酯(EVA)薄膜的体外模型来测量吸附于土壤的[14C]苯的生物利用度。 [14C]铬迅速从土壤移入水室,并在2小时内达到稳态。在32小时内EVA膜达到平衡。时效处理加标土壤6或12个月对的动员没有影响。数据最适合单室模型的发现支持了这一点。尽管当使用水或未中和的胃肠液代替完全培养基时,[14C]苯的迁移量显着降低,但在所有条件下EVA膜中[14C]苯的平衡浓度均保持不变。因此,摄取的驱动力是水相和EVA膜之间的逸度梯度。培养的人肠上皮细胞(人结肠直肠癌细胞系[Caco-2细胞])的脂标准化逸出能力比EVA膜高,但是消除速率常数相同,这表明速率受未搅拌水的抵抗力控制。膜-水界面的水层。

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