Trišović Nemanja, Valentić Nataša, Ušćumlić Gordana
Department of Organic Chemistry, Faculty of Technology and Metallurgy, University of Belgrade, Karnegijeva 4, 11000 Belgrade, Serbia.
Chem Cent J. 2011 Oct 14;5(1):62. doi: 10.1186/1752-153X-5-62.
Considering the pharmaceutical importance of hydantoins, a set of 25 derivatives of phenytoin, nirvanol and 5-methyl-5-phenylhydantoin, the lipophilicities of which were gradually increased by the introduction of different alkyl, cycloalkyl and alkenyl groups in position N3, was synthesized. Their properties under consideration were either estimated empirically, by UV/Vis spectroscopy, or calculated using established medicinal chemistry software. The UV absorption spectra of the investigated compounds were recorded in the region from 200 to 400 nm, in selected solvents of different polarities. The effects of solvent dipolarity/polarizability and solvent-solute hydrogen bonding interactions were analyzed by means of the linear solvation energy relationship (LSER) concept proposed by Kamlet and Taft. Furthermore, the relationships between solvent-solute interactions and selected structural features of the solutes, which are believed to markedly affect the processes of absorption, distribution, metabolism, excretion and toxicity (ADMETox), were discussed. Satisfactory correlations were found between hydrogen bonding properties and solute size and the in silico calculated bioactivity descriptors, in particular %Abs. (human intestinal absorption), log BB (blood-brain barrier permeation) and log kA (protein binding affinities) parameters. In view of the results of this study, the investigated hydantoin derivatives met the pharmacokinetic criteria for pre-selection as drug candidates and qualified them for the pharmacodynamic phase of antiepileptic drug development.
鉴于乙内酰脲类药物的重要性,合成了一组25种苯妥英、尼凡诺和5-甲基-5-苯基乙内酰脲的衍生物,通过在N3位引入不同的烷基、环烷基和烯基,它们的亲脂性逐渐增加。所考虑的性质要么通过紫外/可见光谱法进行经验估计,要么使用既定的药物化学软件进行计算。在不同极性的选定溶剂中,记录了所研究化合物在200至400nm范围内的紫外吸收光谱。利用Kamlet和Taft提出的线性溶剂化能关系(LSER)概念,分析了溶剂偶极矩/极化率和溶剂-溶质氢键相互作用的影响。此外,还讨论了溶剂-溶质相互作用与溶质选定结构特征之间的关系,这些结构特征被认为会显著影响吸收、分布、代谢、排泄和毒性(ADMETox)过程。在氢键性质与溶质大小以及计算机模拟计算的生物活性描述符之间发现了令人满意的相关性,特别是%Abs。(人体肠道吸收)、log BB(血脑屏障通透性)和log kA(蛋白质结合亲和力)参数。鉴于本研究的结果,所研究的乙内酰脲衍生物符合作为候选药物进行预选的药代动力学标准,并使其有资格进入抗癫痫药物开发的药效学阶段。