首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Structure Optimization of Neuraminidase Inhibitors as Potential Anti-Influenza (H1N1Inhibitors) Agents Using QSAR and Molecular Docking Studies
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Structure Optimization of Neuraminidase Inhibitors as Potential Anti-Influenza (H1N1Inhibitors) Agents Using QSAR and Molecular Docking Studies

机译:使用QSAR和分子对接研究优化神经氨酸酶抑制剂作为潜在的抗H1N1抑制剂的结构

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摘要

The urgent need of neuraminidase inhibitors (NI) has provided an impetus for understanding the structure requisite at molecular level. Our search for selective inhibitors of neuraminidase has led to the identification of pharmacophoric requirements at various positions around acyl thiourea pharmacophore. The main objective of present study is to develop selective NI, with least toxicity and drug like ADMET properties. Electronic, Steric requirements were defined using kohnone nearest neighbour- molecular field analysis (kNN-MFA) model of 3D-QSAR studies. Results generated by QSAR studies showed that model has good internal as well as external predictivity. Such defined requirements were used to generate new chemical entities which exhibit higher promising predicted activities. To check selective binding of designed NCE’s docking studies were carried out using the crystal structure of the neuraminidase enzyme having co-crystallized ligand Oseltamivir. Thus, molecular modelling provided a good platform to optimize the acyl thiourea pharmacophore for designing its derivatives having potent anti-viral activity.
机译:神经氨酸酶抑制剂(NI)的迫切需求为理解分子水平的结构要求提供了动力。我们对神经氨酸酶选择性抑制剂的研究已导致在酰基硫脲药效团周围各个位置鉴定出药效学要求。本研究的主要目的是开发具有最小毒性和ADMET特性的选择性NI。电子,立体要求是使用3D-QSAR研究的kohnone最近邻分子场分析(kNN-MFA)模型定义的。 QSAR研究产生的结果表明,该模型具有良好的内部和外部预测性。这些定义的要求用于生成新的化学实体,这些化学实体表现出更高的预期活动。为了检查设计的NCE的选择性结合,使用具有共结晶配体Oseltamivir的神经氨酸酶的晶体结构进行了对接研究。因此,分子建模为优化酰基硫脲药效团提供了一个良好的平台,以设计其具有有效抗病毒活性的衍生物。

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