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新合成的氟喹诺酮类抗菌药物奥拉氟沙星(HSR-903)的质子化平衡与亲脂性

Protonation equilibrium and lipophilicity of olamufloxacin (HSR-903), a newly synthesized fluoroquinolone antibacterial.

作者信息

Sun Jin, Sakai Shigeko, Tauchi Yoshihiko, Deguchi Yoshiharu, Cheng Gang, Chen Jimin, Morimoto Kazuhiro

机构信息

Department of Pharmaceutics, Hokkaido College of Pharmacy, Otaru-city, Hokkaido, Japan.

出版信息

Eur J Pharm Biopharm. 2003 Sep;56(2):223-9. doi: 10.1016/s0939-6411(03)00099-7.

Abstract

This study was performed to characterize the protonation equilibrium at the molecular level and pH-dependent lipophilicity of olamufloxacin. The deprotonation fraction of the carboxyl group as a function of pH was specifically calculated at the critical wavelength 294 nm, where UV pH-dependent absorbance of olamufloxacin was independent of the ionized state of the aminopyrrolidinyl amino group but heavily depended on that of the carboxyl moiety. Accordingly, micro-protonation equilibrium could be described using a nonlinear least-squares regression program MULTI. In contrast, macro-protonation equilibrium was depicted at most wavelengths where olamufloxacin absorbance was influenced by ionized states of both proton-binding groups, results coinciding with the former. Furthermore, distribution features of four microspecies in aqueous phase were assessed. The apparent partition coefficient versus pH profile of olamufloxacin showed a parabolic curve in n-octanol/buffer system which reached peak near pH 8, agreeing with the above determined isoelectric point (pI). Ion-pair effect was observed for olamufloxacin under an acidic condition, eliciting experimental values higher than those theoretically calculated, which was similar to ciprofloxacin but not levofloxacin due to amino group type. Moreover, olamufloxacin was moderately lipophilic in comparison with other quinolones, with an apparent partition coefficient of 1.95 at pH 7.4.

摘要

本研究旨在从分子水平表征奥拉氟沙星的质子化平衡及pH依赖性亲脂性。在294nm临界波长下,专门计算了羧基去质子化分数随pH的变化情况,在此波长下,奥拉氟沙星的紫外pH依赖性吸光度与氨基吡咯烷基氨基的离子化状态无关,但很大程度上取决于羧基部分的离子化状态。因此,可使用非线性最小二乘回归程序MULTI来描述微质子化平衡。相比之下,在大多数波长下描绘了宏质子化平衡,在这些波长下,奥拉氟沙星的吸光度受两个质子结合基团离子化状态的影响,结果与前者一致。此外,评估了四种微物种在水相中的分布特征。奥拉氟沙星在正辛醇/缓冲液体系中的表观分配系数与pH曲线呈抛物线状,在pH 8附近达到峰值,与上述测定的等电点(pI)一致。在酸性条件下观察到奥拉氟沙星的离子对效应,导致实验值高于理论计算值,这与环丙沙星类似,但由于氨基类型的原因与左氧氟沙星不同。此外,与其他喹诺酮类药物相比,奥拉氟沙星具有中等亲脂性,在pH 7.4时表观分配系数为1.95。

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