首页> 外文OA文献 >Genotoksični učinci karbamatnog insekticida Pirimor-50® na vršni meristem korijena biljke Vicia faba i kulturu ljudskih limfocita nakon izravne primjene i tretiranja njegovim metaboličkim ekstraktima
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Genotoksični učinci karbamatnog insekticida Pirimor-50® na vršni meristem korijena biljke Vicia faba i kulturu ljudskih limfocita nakon izravne primjene i tretiranja njegovim metaboličkim ekstraktima

机译:直接施用并用其代谢提取物处理后,氨基甲酸酯杀虫剂Pirimor-50®对蚕豆根尖分生组织和人淋巴细胞的遗传毒性

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摘要

The aim of the study was to evaluate genotoxic effects of Pirimor-50®, a pirimicarb-based formulation (50 % active ingredient), in human lymphocyte cultures and Vicia faba root meristems. Furthermore, the objective was to examine a combined influence of insecticide treatment with mammalian microsomal S9 and vegetal S10 metabolic fractions or S10 mix metabolic transformation extracts (after Vicia faba primary roots treatment with Pirimor-50®). We used sister chromatid exchange assay-SCE and measured cell cycle progression and proliferation (proportion of M1-M3 metaphases and replication index ratio-RI). Two processes were used for plant promutagen activation: in vivo activation-Pirimor-50® was applied for 4 h to the plant and then S10 mix was added to lymphocytes; and, in vitro activation-lymphocytes were treated with Pirimor-50® and S10 or S9 for 2 h. Direct treatment induced significantly higher SCE frequencies in meristems at 0.01 mg mL-1. In lymphocytes, significantly higher SCE was at 1 mg mL-1 with decrease in RI and M1-M3 metaphase proportions at 0.5 mg mL-1 and cell division stop at 2.5 mg mL1. S10 mix lymphocyte treatment showed significantly elevated SCE values at 2-2.5 mg mL-1, with cell death at 3 mg mL-1. Lymphocyte treatment with Pirimor-50® together with S9 or S10 showed slightly elevated SCE frequency but had a significant influence on RI decrease, with lowest values in S9 treatment. Since no data are available on the genotoxicity of Pirimor-50®, this study is one of the first to evaluate and compare its direct effect in two bioassays, animal and vegetal, and also the effect of plant and animal metabolism on its genotoxic potential.
机译:这项研究的目的是评估Pirimor-50®(一种基于吡虫威的配方(50%活性成分))对人淋巴细胞培养和蚕豆根分生组织的遗传毒性作用。此外,目的是研究用哺乳动物微粒体S9和植物S10代谢级分或S10混合代谢转化提取物(经过蚕豆对Vicia faba初生根处理后)进行杀虫剂处理的综合影响。我们使用姐妹染色单体交换测定-SCE并测量细胞周期进程和增殖(M1-M3中期比例和复制指数比率-RI)。有两种方法可用于植物蛋白原活化:将体内活化-Pirimor-50®对植物施加4 h,然后将S10混合物添加至淋巴细胞;然后,用Pirimor-50®和S10或S9处理体外活化淋巴细胞2 h。直接治疗在0.01 mg mL-1的分生组织中诱导出明显更高的SCE频率。在淋巴细胞中,SCE在1 mg mL-1时显着更高,RI和M1-M3中期比例在0.5 mg mL-1时降低,而细胞分裂在2.5 mg mL1时停止。 S10混合淋巴细胞治疗在2-2.5 mg mL-1处显示SCE值显着升高,而在3 mg mL-1处细胞死亡。 Pirimor-50®与S9或S10一起进行的淋巴细胞处理显示SCE频率略有升高,但对RI降低有显着影响,在S9处理中最低。由于尚无关于Pirimor-50®遗传毒性的数据,因此该研究是第一个评估和比较其在两种生物测定(动物和植物)中的直接作用以及动植物代谢对其遗传毒性潜力的影响的研究之一。

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