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Mini-P-gp and P-gp Co-Expression in Brown Trout Erythrocytes: A Prospective Blood Biomarker of Aquatic Pollution

机译:Mini-P-gp和P-gp在褐鳟红细胞中的共表达:水污染的前瞻性血液生物标志物。

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摘要

In aquatic organisms, such as fish, blood is continually exposed to aquatic contaminants. Multidrug Resistance (MDR) proteins are ubiquitous detoxification membrane pumps, which recognize various xenobiotics. Moreover, their expression is induced by a large class of drugs and pollutants. We have highlighted the co-expression of a mini P-gp of 75 kDa and a P-gp of 140 kDa in the primary culture of brown trout erythrocytes and in the erythrocytes of wild brown trout collected from three rivers in the Auvergne region of France. In vitro experiments showed that benzo[a]pyrene, a highly toxic pollutant model, induced the co-expression of mini-P-gp and P-gp in trout erythrocytes in a dose-dependent manner and relay type response. Similarly, in the erythrocytes of wild brown trout collected from rivers contaminated by a mixture of PAH and other multi-residues of pesticides, mini-P-gp and P-gp were able to modulate their expression, according to the nature of the pollutants. The differential and complementary responses of mini-P-gp and P-gp in trout erythrocytes suggest the existence in blood cells of a real protective network against xenobiotics/drugs. This property could be exploited to develop a blood biomarker of river pollution.
机译:在诸如鱼类的水生生物中,血液不断暴露于水生污染物。多药抗药性(MDR)蛋白是普遍存在的排毒膜泵,可识别多种异生物素。此外,它们的表达是由一大类药物和污染物诱导的。我们强调了在法国鳟鱼红血球原代培养物中和从法国奥弗涅地区三条河流收集的野生褐鳟鱼红血球中最小P-gp和140 kDa的P-gp共表达。体外实验表明,苯并[a]是一种剧毒的污染物模型,可诱导鳟鱼红细胞中mini-P-gp和P-gp共表达,且呈剂量依赖性和中继型应答。同样,在从多环芳烃和其他多种农药残留污染的河流中收集的野鳟鳟鱼的红细胞中,mini-P-gp和P-gp能够根据污染物的性质调节其表达。鳟鱼红细胞中mini-P-gp和P-gp的差异和互补反应表明,血细胞中存在真正的针对异源生物/药物的保护网络。可以利用该特性来开发河流污染的血液生物标志物。

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