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Impact of the Antidiabetic Drug Metformin and Its Transformation Product Guanylurea on the Health of the Big Ramshorn Snail (Planorbarius corneus)

机译:降糖药物二甲双胍及其转化产物鸟尿素对大拉姆斯霍恩蜗牛(Planorbarius corneus)健康的影响

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Pharmaceuticals can enter surface waters via sewage treatment plants. In the environment, the substances and their transformation products, formed by degradation of the parent compounds, may affect aquatic wildlife including freshwater invertebrates. However, research on pharmaceutical-induced effects in feral freshwater organisms other than fish is still scarce to date. In our study, we therefore investigated the impact of the highly consumed antidiabetic drug metformin and its main transformation product guanylurea on the health of a freshwater gastropod – the big ramshorn snail (Planorbarius corneus) with respect to biochemical and cellular stress responses and apical parameters. The snails were exposed to different concentrations of the drug (0, 10, 100, 1000, 10 000, 100 000 μg/L) and its transformation product (0, 100, 10 000, 100 000 μg/L). The examined parameters were mortality, weight, tissue integrity of the hepatopancreas and the levels of stress proteins and lipid peroxides. Mortality and the levels of stress proteins and lipid peroxides were not influenced by the two substances. In response to the highest concentrations of both chemicals, the weight of the snails was slightly but not significantly reduced. The histopathological investigation of the hepatopancreas revealed a significant effect of guanylurea at a concentration of 100 000 μg/L with an increased number of symptoms of cellular responses in the tissue (e.g. dilated lumen, disturbed compartmentation of the digestive cells, nucleus deformation, hyperplasia and hypertrophy of crypt cells). For the parent compound, a similar trend was also revealed for the highest concentration. Overall, the observed effects did not occur at environmentally relevant concentrations, but at concentrations which were 10 000 times higher than these. Thus, the results did not give rise to major concern that metformin and guanylurea may pose a risk to the big ramshorn snail in the environment.
机译:药品可以通过污水处理厂进入地表水。在环境中,由母体化合物降解形成的物质及其转化产物可能会影响包括淡水无脊椎动物在内的水生野生生物。但是,迄今为止,对除鱼类以外的野生淡水生物中药物诱导作用的研究仍很少。因此,在我们的研究中,我们从生化和细胞应激反应以及根尖参数方面研究了高消耗量的降糖药二甲双胍及其主要转化产物鸟嘌呤对淡水腹足动物-大拉姆斯霍恩蜗牛(Planorbarius corneus)的健康的影响。将蜗牛暴露于不同浓度的药物(0、10、100、1000、10000、100000μg/ L)和其转化产物(0、100、10000、100000μg/ L)。检查的参数是死亡率,体重,肝胰脏的组织完整性以及应激蛋白和脂质过氧化物的水平。两种物质均未影响其死亡率以及应激蛋白和脂质过氧化物的水平。响应两种化学品的最高浓度,蜗牛的重量略有减轻,但没有明显减轻。对肝胰脏的组织病理学研究表明,浓度为100 000μg/ L的鸟嘌呤具有明显的作用,并且组织中细胞反应的症状增多(例如管腔扩张,消化细胞的分隔不畅,细胞核变形,增生和隐窝细胞肥大)。对于母体化合物,最高浓度也显示出类似的趋势。总体而言,在与环境有关的浓度下观察到的影响并未发生,但在比这些浓度高10,000倍的浓度下发生。因此,结果并未引起人们对二甲双胍和鸟嘌呤脲可能对环境中的大拉姆斯兰蜗牛构成危险的重大关注。

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