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Neurotoxicity of Pesticides: The Roadmap for the Cubic Mode of Action

机译:农药的神经毒性:立方体行动模式的路线图

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Pesticides arc used today on a planetary-wide scale. The rising need for substances with this biological activity-due to an increasing consumption of agricultural and animal products and to the development of urban areas makes the chemical industry to constantly investigate new molecules or to improve the physicochemical characteristics, increase the biological activities and improve the toxicity profiles of the already known ones. Molecular databases are increasingly accessible for in vitro and in vivo bioavailability studies. In this context, structure-activity studies, by their in silica-in cerebra methods, are used to precede in vitro and in vivo studies in plants and experimental animals because they can indicate trends by statistical methods or biological activity models expressed as mathematical equations or graphical correlations, so a direction of study can he developed or another can be abandoned, saving financial resources, time and laboratory animals. Following this line of research the present paper reviews the Structure-Activity Relationship (SA R) studies and proposes a correlation between a topological connectivity index and the biological activity or toxicity made as a result of a study performed on 11 molecules of organophosphate compounds, randomly chosen, with a basic structure including a Phosphorus atom double botmded to an Oxygen atom or to a Sulfur one and having three other simple covalent bonds with two alkoxy (-methoxy or-ethoxy) groups and to another functional group different from the alkoxy groups. The molecules were packed on a cubic structure consisting of three adjacent cubes, respecting a principle of topological efficiency, that of occupying a minimal space in that cubic structure, a method that was called the Clef Method. The central topological index selected for correlation was the Wiener index, since it was possible this way to discuss different adjacencies between the nodes in the graphs corresponding to the organophosphate compounds molecules packed on the cubic structure; accordingly, "three dimensional" variants of these connectivity indices could be considered and further used for studying the qualitative-quantitative relationships for the specific molecule-eli7yme interaction complexes, including correlation between the Wiener weights (nodal specific contributions to the total Wiener index of the molecular graph) and the biochemical reactivity-of sonic of the atoms. Finally, when passing from SA R to Q(uantitative)-SAR studies, especially by the present advanced method of the cubic molecule (Clef Method) and its good assessment of the (neuro)toxicity of the studied molecules and of their inhibitory effect on the target enzyme-acetylcholinesterase, it can be seen that a predictability of the toxicity and activity of different analogue compounds can be ensured, facilitating the in vivo experiments or improving the usage of pesticides.
机译:杀虫剂今天使用的行星级尺寸。具有这种生物活动的物质的需求上升 - 由于农业和动物产品的消费量增加以及城市地区的发展使化学工业不断调查新分子或改善物理化学特征,增加生物学活动并改善已知的毒性概况。体外和体内生物利用度研究越来越多地获得分子数据库。在这种情况下,通过它们在二氧化硅脑中的结构 - 活性研究用于在体外和体内研究植物和实验动物之前,因为它们可以通过统计方法或生物活动模型表示作为数学方程或者的生物活动模型的趋势图形相关性,所以他的发展方向可以抛弃,节省财政资源,时间和实验动物。在此研究行业之后,本文审查了结构 - 活动关系(SA R)研究,并提出了由于在11分子的有机磷酸酯化合物,随机上进行的研究而产生的拓扑连通性指数和生物活性或毒性之间的相关性选择的基本结构包括磷原子的磷原子双层或含硫,并具有三种与两种烷氧基( - 甲氧基或乙氧基)基团的其他简单的共价键,并与烷氧基不同的官能团。将分子包装在由三个相邻立方体组成的立方结构上,尊重拓扑效率原理,即占据立方结构中的最小空间的基本,一种称为谱法方法的方法。选择相关的中央拓扑指数是维纳指数,因为这种方法可以在与包装在立方结构上的有机磷酸盐化合物分子相对应的图中讨论节点之间的不同邻接;因此,可以考虑这些连接索引的“三维”变体,并进一步用于研究特定分子-ELI2ME相互作用复合物的定性定量关系,包括维纳权重之间的相关性(节点特定贡献对总维纳指数的节点特定贡献分子图)和原子的声波的生物化学反应性。最后,当从SA R至Q(余型)-SAR的研究时,特别是通过立方分子(CLEF方法)的现有先进方法及其对研究分子(Neuro)毒性的良好评估及其抑制作用可以确保靶酶 - 乙酰胆碱酯酶,可以确保不同类似物化合物的毒性和活性的可预测性,促进体内实验或改善杀虫剂的使用。

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