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Sublethal toxicity of Roundup to immunological and molecular aspects of Biomphalaria alexandrina to Schistosoma mansoni infection

机译:农达对亚历山大线虫的免疫和分子生物学方面的亚致死毒性对曼氏血吸虫感染

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The present study was performed to elucidate the cellular mechanisms of Biomphalaria alexandrina snails hemocytes against sublethal concentration (10mg/L) of herbicide Roundup (48% Glyphosate) and/or Schistosoma mansoni infection during 7 days of exposure. Obtained results indicated that herbicide treatment and/or infection led to significant increase (P < 0.05) in total hemocytes count during exposure period. Examination of hemocytes monolayers resulted in observation of 3 morphologically different cell types, round small, hyalinocytes and spreading hemocytes. Spreading hemocytes are the dominant, more responsive and highly phagocytic cell type in all experimental groups. Moreover, the exposure to herbicide, infection or both together led to a significant increase (P < 0.05) of in vitro phagocytic activity against yeast cells during 7 days of exposure. In addition, flow cytometric analysis of cell cycle and comet assay, resulted in DNA damage in 8. alexandrina hemocytes exposed to herbicide and/or S. mansoni infection when compared to control group. The immunological responses as well as molecular aspects in B. alexandrina snails have been proposed as biomarkers of exposure to environmental pollutants.
机译:进行本研究以阐明暴露的7天中,亚历山大草蜗牛的血细胞针对亚致死浓度(10mg / L)的除草剂农达(48%草甘膦)和/或曼氏血吸虫感染的细胞机制。获得的结果表明,除草剂处理和/或感染导致暴露期间总血细胞计数显着增加(P <0.05)。血细胞单层检查导致观察到3种形态不同的细胞类型,圆形小,透明质细胞和散布的血细胞。在所有实验组中,扩散的血细胞是占主导地位的,反应更强的吞噬细胞。此外,暴露于除草剂,感染或两者同时导致暴露的7天中,针对酵母细胞的体外吞噬活性显着增加(P <0.05)。此外,与对照组相比,细胞周期和彗星试验的流式细胞术分析,导致暴露于除草剂和/或曼氏沙门氏菌感染的亚历山大三世血细胞中的DNA受损。8。已经提出了亚历山大藻蜗牛的免疫应答以及分子方面作为暴露于环境污染物的生物标记。

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