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全氟烷基酸的生物浓缩:特异性结合有多重要?

Bioconcentration of perfluorinated alkyl acids: how important is specific binding?

机构信息

Institute for Chemical and Bioengineering, ETH Zurich, Wolfgang-Pauli-Strasse 10 CH-8093 Zurich, Switzerland.

出版信息

Environ Sci Technol. 2013 Jul 2;47(13):7214-23. doi: 10.1021/es400981a. Epub 2013 Jun 18.

Abstract

Perfluorinated alkyl acids (PFAAs) are important global pollutants with unique pharmacokinetics. Evidence is accumulating that their behavior within organisms is affected by interaction with a number of proteins. In mammals, serum albumin, fatty acid binding proteins (FABPs) and organic anion transporters (OATs) have been identified as important to the tissue distribution, species-specific accumulation, and species- and gender-specific elimination rates of perfluoroalkyl carboxylates and perfluoroalkane sulfonates. Similar pharmacokinetics has been identified in fish. Yet, no mechanistic model exists for the bioaccumulation of PFAAs in fish that explicitly considers protein interactions. In this work, we present the first mechanistic protein-binding bioconcentration model for PFAAs in fish. Our model considers PFAA uptake via passive diffusion at the gills, association with serum albumin in the circulatory and extracellular spaces, association with FABP in the liver, and renal elimination and reabsorption facilitated by OAT proteins. The model is evaluated using measured bioconcentration and tissue distribution data collected in two previous studies of rainbow trout (Oncorhynchus mykiss) and common carp (Cyprinus carpio). Comparing our model with previous attempts to describe PFAA bioconcentration using a nonspecific (partitioning-type) approach shows that inclusion of protein interactions is key to accurately predicting tissue-specific PFAA distribution and bioconcentration.

摘要

全氟烷基酸(PFAAs)是具有独特药代动力学的重要全球性污染物。有证据表明,它们在生物体中的行为受到与许多蛋白质相互作用的影响。在哺乳动物中,血清白蛋白、脂肪酸结合蛋白(FABP)和有机阴离子转运蛋白(OAT)被认为对全氟烷基羧酸和全氟烷磺酸的组织分布、物种特异性积累以及物种和性别特异性消除率很重要。在鱼类中也发现了类似的药代动力学。然而,目前还没有针对鱼类中 PFAAs 生物累积的机制模型明确考虑蛋白质相互作用。在这项工作中,我们提出了第一个用于鱼类中 PFAAs 的考虑蛋白质相互作用的机制蛋白结合生物浓缩模型。我们的模型考虑了通过鳃的被动扩散、在循环和细胞外空间与血清白蛋白的结合、在肝脏与 FABP 的结合,以及由 OAT 蛋白促进的肾脏消除和再吸收。该模型使用在先前两项虹鳟(Oncorhynchus mykiss)和鲤鱼(Cyprinus carpio)研究中收集的生物浓缩和组织分布测量数据进行了评估。将我们的模型与以前使用非特异性(分配型)方法描述 PFAA 生物浓缩的尝试进行比较表明,包括蛋白质相互作用是准确预测组织特异性 PFAA 分布和生物浓缩的关键。

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