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Examining pharmacodynamic and pharmacokinetic properties of eleven analogues of saquinavir for HIV protease inhibition

机译:检测Saquinavir对HIV蛋白酶抑制作用11的药物动力学和药代动力学特性

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HIV is one of the most lethal viral diseases in the human population. Patients often suffer from drug resistance, which hampers HIV therapy. Eleven different structural analogues of saquinavir (SQV), designed using ChemSketch and named S1 through S11, were compared with SQV with respect to their pharmacodynamic and pharmacokinetic properties. Pharmacokinetic predictions were carried out using AutoDock, and molecular docking between macromolecule HIV protease (PDB ID: 3IXO) and analogues S1 - S11 as ligands was performed. Analogues S1, S3, S4, S9 and S11 had lower binding scores when compared with saquinavir, whereas that of analogue S5 was similar. Pharmacokinetic predictions made using ACDilab2, including the Lipinski profile, general physical features, absorption, distribution, metabolism and excretion parameters, and toxicity values, for the eleven analogues and SQV suggested that S1 and S5 are pharmacodynamically and pharmacokinetically robust molecules that could be developed and established as lead molecules after in vitro and in vivo studies.
机译:艾滋病毒是人类人群中最致命的病毒疾病之一。患者经常患有耐药性,妨碍HIV治疗。将使用Chemsketch和命名S1至S11设计的Saquinavir(SQV)的11个不同的结构类似物与SQV相对于其药效学和药代动力学性能进行比较。使用Autodock进行药代动力学预测,并且进行了大分子HIV蛋白酶(PDB ID:3×CXO)和作为配体的类似物S1-S11之间的分子对接。与Saquinavir相比,类似物S1,S3,S4,S9和S11具有较低的绑定分数,而类似物S5的相似性是相似的。使用ACDILAB2的药代动力学预测,包括Lipinski型材,一般物理特征,吸收,分布,代谢和排泄参数,以及毒性值,以及S5表明S1和S5是可以开发的药动力学和药代动力学的稳健分子在体外和体内研究后被确定为铅分子。

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