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Glyphosate and its formulations – Toxicity, occupational and environmental exposure

机译:草甘膦及其制剂–毒性,职业和环境暴露

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Glyphosate (N-(phosphonomethyl)glycine) is an active ingredient of the most widely used herbicide formulations in protecting agricultural and horticultural crops. Numerous results (mostly published in the years 2010-2013) concerning the action of glyphosate and its formulations in the recent decade were analyzed. Initial reports about alleged biodegradability of glyphosate in the environment turned out to be wrong. It has been shown that glyphosate remains in the soil and can reach people by spreading along with groundwater. Recent publications have shown that glyphosate is detected at low concentrations in the human blood. Publications cited in this article, which indicate a possible induction of neoplastic changes by glyphosate formulation, have raised great concern and controversy in the scientific world. Presenting adverse effects of glyphosate and its formulations we focused on the role of glyphosate formulations in hormonal disorders by impeding the expression of steroidogenic acute regulatory protein and the inhibition of aromatase activity. The impact of glyphosate on oxygen reactive species formation, changes in redox system and the effect on necrosis and apoptosis in various types of cells was shown. We also revealed that glyphosate as a phosphonate herbicide does not inhibit directly the activity of acetylcholinesterase. Based on numerous studies it was noted that commercial formulations of glyphosate exhibit higher toxicity than that of the active substance itself. The discussed problems clearly show the need to evaluate the toxicity of glyphosate and its formulations and related potential threat to humans. Med Pr 2013;64(5):717–729
机译:草甘膦(N-(膦酰基甲基)甘氨酸)是用于保护农业和园艺作物的最广泛使用的除草剂配方中的活性成分。分析了近十年来草甘膦的作用及其制剂的大量研究结果(大多数发表于2010-2013年)。关于据称草甘膦在环境中具有生物可降解性的初步报道被证明是错误的。研究表明,草甘膦残留在土壤中,并且可以与地下水一起传播,从而可以到达人体内。最近的出版物表明,在人血中检测到低浓度的草甘膦。本文引用的出版物表明草甘膦制剂可能诱发肿瘤改变,在科学界引起了极大的关注和争议。在介绍草甘膦及其制剂的不利影响时,我们重点研究了草甘膦制剂在激素紊乱中的作用,即通过抑制类固醇生成的急性调节蛋白的表达和抑制芳香化酶活性来实现。显示了草甘膦对各种类型细胞中氧反应性物种形成,氧化还原系统变化以及对坏死和凋亡的影响。我们还发现草甘膦作为膦酸酯类除草剂不会直接抑制乙酰胆碱酯酶的活性。基于大量研究,注意到草甘膦的商业制剂显示出比活性物质本身更高的毒性。所讨论的问题清楚地表明需要评估草甘膦及其制剂的毒性以及对人类的潜在威胁。 Med Pr 2013; 64(5):717–729

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