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首页> 外文期刊>Chembiochem: A European journal of chemical biology >The Unique Role of Fluorine in the Design of Active Ingredients for Modern Crop Protection
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The Unique Role of Fluorine in the Design of Active Ingredients for Modern Crop Protection

机译:氟在现代农作物保护有效成分设计中的独特作用

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摘要

The task of inventing and developing active ingredients with useful biological activities requires a search for novel chemical substructures. This process may trigger the discovery of whole classes of chemicals of potential commercial interest. Similar biological effects can often be achieved by completely different compounds. However, compounds within a given structural family may exhibit quite different biological activities depending on their interactions with different intracellular proteins like enzymes or receptors. By varying the functional groups and structural elements of a lead compound, its interaction with the active site of the target protein, as well as its physicochemical, pharmacokinetic, and dynamic properties can be improved. In this context, the introduction of fluorine into active ingredients has become an important concept in the quest for a modern crop protection product with optimal efficacy, environmental safety, user friendliness, and economic viability. Fluorinated organic compounds represent an important and growing family of commercial agrochemicals. A number of recently developed agrochemical candidates represent novel classes of chemical compounds with new modes of action; several of these compounds contain new fluorinated substituents. However, the complex structure-activity relationships associated with biologically active molecules mean that the introduction of fluorine can lead to either an increase or a decrease in the efficacy of a compound depending on its changed mode of action, physicochemical properties, target interaction, or metabolic susceptibility and transformation. Therefore, it is still difficult to predict the sites in a molecule at which fluorine substitution will result in optimal desired effects.
机译:发明和开发具有有用生物活性的活性成分的任务需要寻找新的化学亚结构。此过程可能会触发发现具有潜在商业价值的全部化学品。通常,可以通过完全不同的化合物获得相似的生物学效应。但是,给定结构家族中的化合物可能会表现出完全不同的生物学活性,这取决于它们与不同细胞内蛋白质(例如酶或受体)的相互作用。通过改变前导化合物的官能团和结构元素,可以改善其与靶蛋白活性位点的相互作用,以及其理化,药代动力学和动力学性质。在这种情况下,将氟引入活性成分已成为寻求具有最佳功效,环境安全,用户友好性和经济可行性的现代作物保护产品的重要概念。氟化有机化合物代表着重要的且正在增长的商业化农药家族。许多最近开发的农业化学候选物代表了具有新作用方式的新型化学化合物。这些化合物中的一些含有新的氟化取代基。但是,与生物活性分子相关的复杂的结构-活性关系意味着,氟的引入会导致化合物功效的增加或降低,具体取决于其改变的作用方式,理化性质,靶标相互作用或代谢易感性和转化。因此,仍然难以预测分子中的氟取代将导致最佳所需效果的位点。

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