ADMET and Druglikeness Calculations of Sarin, Soman, and Their Hypothetical Derivatives

K. Hammud
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Abstract

Absorption, Distribution, Metabolism, Excretion, and Toxicity (ADMET) represents a numerical classification of any chemical to be a drug candidate with promising therapeutic efficacy with minimum toxicity or sensitivity depending on its chemical structures and its physicochemical properties. Sarin (GB) and Soman (GD) are nerve agents classified as chemical warfare agent containing phosphorous atom. Acetylcholine (ACh) as a neurotransmitter esterifies by acetyl cholinesterase enzyme (AChE) that can be irreversibly inhibited by (GB and GD) meaning termination of muscle function. Here, new in Silico predication of two nerve agents (Sarin and Soman) was done. These organophosphorous agents were hypothetically subjected to a reaction with lactic acid and various amino acids. New P-O with lactic acid and P-N linkage was between Sarin or Soman and different amino acids. Both reactions were through fluorine atom with hydroxyl group (P-O formation) and with amine (P-N). The ADMET and Druglikeness properties of the parent chemical warfare agents and their hypothetical products were subjected to MarvinSketch program and preadmet website. Sarin and Soman and their hypothetical products showed many noticeable characters such as: all 20 tested compounds were with non- inhibition character of Pgp and CYp-2D6; substrate character with CYP-3A4, negative values to skin permeability, negative to Carcino-Mouse, low risk to hERG inhibition. Other calculated predictors were varied in response between all calculated compounds.
沙林、索曼及其假设衍生物的ADMET和药物相似性计算
吸收、分布、代谢、排泄和毒性(ADMET)是根据化学结构和物理化学性质对候选药物进行的一种数值分类,该化学候选药物具有有希望的治疗效果和最小的毒性或敏感性。沙林(GB)和索曼(GD)是被列为含磷化学战剂的神经毒剂。乙酰胆碱(ACh)作为一种神经递质通过乙酰胆碱酯酶(AChE)进行酯化,AChE可被(GB和GD)不可逆地抑制,意味着肌肉功能的终止。本文对两种神经毒剂(沙林和索曼)进行了新的计算机预测。这些有机磷剂假定与乳酸和各种氨基酸发生反应。在沙林或索曼与不同氨基酸之间发现了新的带有乳酸和pn连锁的P-O。这两种反应都是通过氟原子与羟基(P-O形成)和胺(P-N)进行的。对母体化学战剂及其假想产品的ADMET和药物相似性进行了MarvinSketch程序和预ADMET网站的测试。沙林和索曼及其假设产物具有许多显著的特征,如:20种被测化合物均具有Pgp和cyp2d6的无抑制特性;底物特征为cyp3a4,皮肤通透性阴性,癌小鼠阴性,hERG抑制风险低。其他计算的预测因子在所有计算的化合物之间的反应不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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