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Molecular modeling of mono- and bis-quaternary ammonium salts as ligands at the α4β2 nicotinic acetylcholine receptor subtype using nonlinear techniques

机译:使用非线性技术对α4β2烟碱型乙酰胆碱受体亚型的配体单季铵盐和双季铵盐进行分子建模

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摘要

The neuronal nicotinic acetylcholine receptor (nAChR) has been a target for drug development studies for over a decade. A series ofmono- andbis-quaternary ammonium salts, known to be antagonists at nAChRs, were separated into 3 structural classes and evaluated using both self-organizing map (SOM) and genetic functional approximation (GFA) algorithm models. Descriptors from these compounds were used to create several nonlinear quantitative structure-activity relationships (QSARs). The SOM methodology was effective in appropriately grouping these compounds with diverse structures and activities. The GFA models were also able to predict the activities of these molecules. Charge distribution and the hydrophobic free energies were found to be important indicators of bioactivity for this particular class of molecules. These QSAR approaches may be a useful to screen and selectin silico new drug candidates from larger compound libraries to be further evaluated in in vitro biological assays.
机译:十多年来,神经元烟碱型乙酰胆碱受体(nAChR)一直是药物开发研究的目标。一系列已知为nAChRs拮抗剂的单季铵盐和双季铵盐被分为3个结构类别,并使用自组织图(SOM)和遗传功能近似(GFA)算法模型进行了评估。这些化合物的描述符用于创建几种非线性的定量构效关系(QSAR)。 SOM方法学可以有效地将具有不同结构和活性的这些化合物适当地分组。 GFA模型也能够预测这些分子的活性。发现电荷分布和疏水性自由能是该特定分子类别的生物活性的重要指标。这些QSAR方法可能对从更大的化合物库中筛选和选择计算机新药候选物有用,以在体外生物学测定中进一步评估。

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