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Contributions of Pesticide Residue Chemistry to Improving Food and Environmental Safety: Past and Present Accomplishments and Future Challenges

机译:农药残留化学对改善食品和环境安全的贡献:过去和现在的成就和未来的挑战

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The principles of modern pesticide residue chemistry were articulated in the 1950s. Early authors pointed out the advantages of systematizing and standardizing analytical methods for pesticides so that they could be widely practiced and the results could be reproduced from one laboratory to the next. The availability of improved methods has led to a much more complete understanding of pesticide behavior and fate in foods and the environment. Using methods based largely upon gas chromatography (GC) and high-performance liquid chromatography (HPLC) coupled increasingly with mass spectrometry (MS) and MS~n as the detection tool, residues can be measured at parts per billion levels and below in a variety of food and environmental matrices. Development of efficient extraction and cleanup methods, techniques such as ELISA, efficient sample preparation techniques such as QuEChERS, and automated laboratory and field instrumentation has also contributed to the tools available for use in modern pesticide residue analysis. As a result, great strides have been made in improving food and worker safety and in understanding environmental behavior and fate of pesticides. There are many challenges remaining in the field of pesticide residue chemistry that will continue to stimulate analytical chemists. New chemistries are emerging, often patterned on complex natural products. Analyzing for the parent chemicals and potentially multiple breakdown products will require analytical ingenuity. The development of more sensitive bioassays and knowledge of unintended side effects will challenge residue chemistry as well, as in the case of following the fate of environmental endocrine disruptors associated with some pesticides as well as nonpesticide contaminants from packaging materials and other familiar articles. Continued funding and other resources to ensure better training, international cooperation, and accelerated research and development activities will be a constant need in pesticide residue chemistry as it is for all areas of science that aim to mitigate or eliminate contaminants that can affect human and environmental health and safety.
机译:1950年代阐明了现代农药残留化学原理。早期的作者指出了系统化和标准化农药分析方法的优点,因此可以广泛地实践农药,其结果可以从一个实验室复制到另一个实验室。改进方法的可用性使人们对农药行为以及食品和环境中的命运有了更全面的了解。使用主要基于气相色谱(GC)和高效液相色谱(HPLC)的方法,并越来越多地结合质谱(MS)和MS〜n作为检测工具,可以在十亿分之一或以下的水平上测量残留物食物和环境矩阵。有效提取和净化方法,ELISA等技术,QuEChERS等高效样品制备技术以及自动化实验室和现场仪器的开发也为可用于现代农药残留分析的工具做出了贡献。结果,在改善食品和工人安全以及了解环境行为和农药命运方面取得了长足的进步。农药残留化学领域仍然存在许多挑战,这些挑战将继续刺激分析化学家。新化学方法不断涌现,通常以复杂的天然产物为蓝本。分析母体化学品和潜在的多种分解产物将需要分析的技巧。越来越敏感的生物测定方法的发展以及对意外副作用的了解也将对残留化学产生挑战,在遵循与某些农药以及包装材料和其他熟悉物品中的非农药污染物相关的环境内分泌干扰物的命运的情况下。持续的资金和其他资源以确保更好的培训,国际合作和加速的研发活动将是农药残留化学领域的持续需求,因为对于旨在减轻或消除可能影响人类和环境健康的污染物的所有科学领域和安全。

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