Jevrić Lidija R, Podunavac-Kuzmanović Sanja O, Švarc-Gajić Jaroslava V, Kovačević Strahinja Z, Jovanović Bratislav Ž
Department of Applied and Engineering Chemistry, Faculty of Technology, University of Novi Sad, Serbia.
Institute for Chemistry, Technology and Metallurgy, University of Belgrade, Serbia.
Iran J Pharm Res. 2014 Fall;13(4):1203-11.
The properties relevant to pharmacokinetics and pharmacodynamics of four series of synthesized s-triazine derivatives have been studied by Quantitative structure-retention relationship (QSRR) approach. The chromatographic behavior of these compounds was investigated by using reversed-phase high performance thin-layer chromatography (RP-HPTLC). Chromatographic retention (R M (0)) was correlated with selected physicochemical parameters relevant to pharmacokinetics, i.e. ADME (absorption, distribution, metabolism and excretion). In addition, the ability to act as kinase inhibitors and protease inhibitors was predicted for all investigated triazine classes. Also, in order to confirm similarities/dissimilarities between series of examined compounds, principal component analysis (PCA) based on calculated ADME properties was conducted. The R M (0) values of the s-triazine derivatives have been recommended for description and evaluation of pharmacokinetic properties. According to results of this study, the synthesized s-triazine derivatives meet pharmacokinetic criteria of preselection for drug candidates.
采用定量结构-保留关系(QSRR)方法研究了四类合成的s-三嗪衍生物的药代动力学和药效学相关性质。使用反相高效薄层色谱(RP-HPTLC)研究了这些化合物的色谱行为。色谱保留(R M(0))与所选的与药代动力学相关的物理化学参数相关,即ADME(吸收、分布、代谢和排泄)。此外,还预测了所有研究的三嗪类化合物作为激酶抑制剂和蛋白酶抑制剂的能力。另外,为了确认所研究化合物系列之间的异同,基于计算的ADME性质进行了主成分分析(PCA)。已推荐使用s-三嗪衍生物的R M(0)值来描述和评估药代动力学性质。根据本研究结果,合成的s-三嗪衍生物符合药物候选物预选的药代动力学标准。