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New perspectives on perfluorochemical ecotoxicology: inhibition and induction of an efflux transporter in the marine mussel, Mytilus californianus

机译:全氟化学生态毒理学的新观点:抑制和诱导海洋贻贝的加州贻贝外排转运蛋白

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The toxicological effects of perfluoroalkyl acids on the p-glycoprotein (p-gp) cellular efflux transporter were investigated using the marine mussel Mytilus californianus as a model system. Four of the perfluoroalkyl acids studied exhibit chemosensitizing behavior, significantly inhibiting p-gp transporter activity. The inhibitory potency is maximal for the longer chain acids perfluorononanoate (PFNA) and perfluorodecanoate (PFDA), with average IC50 values of 4.8 and 7.1 AM, respectively. Results indicate that PFNA inhibits p-gp by an indirect mechanism, and this inhibition is reversible and accompanied by a rapid loss of PFNA from the tissue. In addition, PFNA induces expression of the p-gp transporter after a 2-h exposure, a stress response that may result in a metabolic cost to the organism. Given that most organisms, including humans, share efflux transporters as a first line of defense against toxicants, the results of this study may have broader implications for the ecotoxicology of perfluoroalkyl acids.
机译:全氟烷基酸对p-糖蛋白(p-gp)细胞外排转运蛋白的毒理作用是使用海洋贻贝加州产Mytilus californianus作为模型系统进行研究的。所研究的全氟烷基酸中的四种表现出化学增敏行为,显着抑制p-gp转运蛋白活性。较长链酸全氟壬酸酯(PFNA)和全氟癸酸酯(PFDA)的抑制效力最大,平均IC50值分别为4.8和7.1 AM。结果表明,PFNA通过间接机制抑制p-gp,这种抑制作用是可逆的,并伴随着组织中PFNA的快速丢失。此外,PFNA在暴露2小时后会诱导p-gp转运蛋白的表达,这是一种应激反应,可能导致生物体代谢受损。考虑到包括人类在内的大多数生物体都将外排转运蛋白作为抵抗有毒物质的第一道防线,因此这项研究的结果可能会对全氟烷基酸的生态毒理学产生更广泛的影响。

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