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THE SORPTIVE CAPACITY OF ANIMAL PROTEIN

机译:动物蛋白的吸附能力

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Partition coefficients that are used to predict concentrations of hydrophobic organic chemicals in biota (e.g., the bioconcentration factor) often assume that the sorptive capacity of an organism or tissue is adequately represented by its lipid content. In lean organisms and tissues, however, theory suggests that partitioning may be strongly influenced by the sorptive capacity of nonlipid materials, such as protein. Little is known about the sorptive capacity of proteins for hydrophobic organic chemicals, and methods to include proteins in bioaccumulation models do not exist. Here, we present a compilation and meta-analysis of published data to estimate the relative sorptive capacities of animal proteins and lipids for neutral organic chemicals. We found that the estimated sorptive capacity of protein in solid animal tissues ranged from around 1 to 10% that of lipid for compounds with a log octanol/water partition coefficient (KOW) of greater than two. The sorptive capacity of blood protein (albumin) appeared to be substantially higher than this, especially for low-KOW chemicals. For modeling purposes, we recommend estimating the sorptive capacity of animal protein as 5% that of lipid. According to this estimate, the sorptive capacity of an animal or tissue will be dominated by the contribution from protein if the lipid content makes up less than 5% of the dry-weight organic content. In such situations, a consideration of the sorptive capacity of nonlipid constituents, such as protein, will permit more accurate predictions of chemical accumulation and distribution.
机译:用于预测生物群中疏水性有机化学物质的浓度的分配系数(例如,生物浓度因子)通常假定生物体或组织的吸附能力由其脂质含量适当地表示。然而,在瘦肉的生物体和组织中,理论表明,分配可能会受到非脂类物质(例如蛋白质)的吸附能力的强烈影响。蛋白质对疏水性有机化学物质的吸附能力知之甚少,并且不存在将蛋白质包含在生物蓄积模型中的方法。在这里,我们提出了已发表数据的汇编和荟萃分析,以估计动物蛋白和脂质对中性有机化学物质的相对吸附能力。我们发现,对于辛醇/水分配系数对数大于2的化合物,估计的蛋白质在固体动物组织中的吸收能力约为脂质的1至10%。血液蛋白(白蛋白)的吸附能力似乎大大高于此,特别是对于低KOW化学品。为了进行建模,我们建议将动物蛋白的吸附能力估计为脂质的5%。根据这一估计,如果脂质含量少于干重有机物含量的5%,则动物或组织的吸收能力将由蛋白质的贡献所决定。在这种情况下,考虑非脂质成分(例如蛋白质)的吸附能力,将可以更准确地预测化学物质的积累和分布。

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