Nornberg Bruna Félix, Batista Carolina Reyes, Almeida Daniela Volcan, Trindade Gilma Santos, Marins Luis Fernando
Instituto de Ciências Biológicas, Universidade Federal do Rio Grande - FURG, Brazil.
Instituto de Ciências Biológicas, Universidade Federal do Rio Grande - FURG, Brazil.
Toxicol In Vitro. 2015 Feb;29(1):204-10. doi: 10.1016/j.tiv.2014.09.010. Epub 2014 Oct 5.
The multi-xenobiotics resistance (MXR) mechanisms are the first line of defense against toxic substances in aquatic organisms and present great importance in the adaptation related to contaminated environments. Methyl parathion (MP) is a widely used organophosphate pesticide, which has been associated to various toxic effects in organisms. In the present work, we studied the main genes related to efflux transporters in zebrafish liver (ZFL) cells exposed to MP with and without an inhibitor of ABC transporters (verapamil). The results concerning transporters activity showed that the MXR mechanism is activated to detoxify from methyl parathion. The toxic effects of MP on ZFL cells were increased in the presence of the efflux transporter inhibitor, once cell viability was significantly decreased in co-exposure experiments. The combined exposure to MP and the inhibitor caused an increase in gene expression of P-gp1 (Abcb1) and MRP4 (Abcc4), suggesting that these transporters isoforms are associated with MP efflux. In general, the expression of genes related to the antioxidant defense system (ADS) was significantly increased in ZFL cells co-exposed to MP and verapamil. These data provide useful insights for better understanding of MP detoxification mechanism in fish hepatocytes.
多异生物质抗性(MXR)机制是水生生物抵御有毒物质的第一道防线,在与污染环境相关的适应性方面具有重要意义。甲基对硫磷(MP)是一种广泛使用的有机磷农药,与生物体的各种毒性效应有关。在本研究中,我们研究了在有和没有ABC转运蛋白抑制剂(维拉帕米)的情况下,暴露于MP的斑马鱼肝脏(ZFL)细胞中与外排转运蛋白相关的主要基因。关于转运蛋白活性的结果表明,MXR机制被激活以从甲基对硫磷中解毒。在外排转运蛋白抑制剂存在的情况下,MP对ZFL细胞的毒性作用增加,因为在共同暴露实验中细胞活力显著降低。MP与抑制剂的联合暴露导致P-糖蛋白1(Abcb1)和多药耐药相关蛋白4(Abcc4)的基因表达增加,表明这些转运蛋白异构体与MP外排有关。总体而言,在同时暴露于MP和维拉帕米的ZFL细胞中,与抗氧化防御系统(ADS)相关的基因表达显著增加。这些数据为更好地理解鱼类肝细胞中MP的解毒机制提供了有用的见解。