Takács-Novák K, Avdeef A, Box K J, Podányi B, Szász G
Institute for Pharmaceutical Chemistry, Semmelweis University of Medicine, Budapest, Hungary.
J Pharm Biomed Anal. 1994 Nov;12(11):1369-77. doi: 10.1016/0731-7085(94)00090-5.
The drug niflumic acid is an amphoteric substance with overlapping pKa values. The acid-base chemistry of the molecule has been characterized in terms of protonation macroconstants (with reference to stoichiometric ionizations) and microconstants (with reference to ionizations of individual species). The proton-binding sites were assigned using 1H and 13C NMR spectroscopy. Due to the very poor water solubility of niflumic acid, the aqueous pKa values were determined from the apparent ionization constants in methanol-water solutions of various proportions by extrapolation to zero co-solvent using the Yasuda-Shedlovsky procedure. The kz tautomerization microconstant of the equilibrium unionized form<-->zwitterionic form was determined from mixtures of organic solvent (dioxane or methanol) with aqueous buffer (at the pH of isoelectric point) by UV spectroscopy, and used for calculation of the other protonation microconstants. The zwitterionic form of the molecule predominates over the uncharged form, the concentration being maximal at the isoelectric pH. The apparent partition coefficients (Papp) of niflumic acid were measured in octanol/water solution by the shake-flask method over a wide pH range. The lipophilicity profile (logPapp vs pH) shows a parabolic shape near its maximum at the isoelectric point. A relationship derived between Papp, PXH0(micropartition coefficient of the uncharged microspecies) and PX-(partition coefficient of the anion) is valid for amphoteric drugs, in cases where the partition of the unionized form and the ion-pair partition of anion can be confirmed. The logP values of microspecies indicate the high lipophilicity of niflumic acid, which is consistent with its good skin penetration and absorption.
药物尼氟灭酸是一种两性物质,其pKa值相互重叠。该分子的酸碱化学性质已根据质子化宏观常数(相对于化学计量电离)和微观常数(相对于单个物种的电离)进行了表征。使用1H和13C核磁共振光谱确定了质子结合位点。由于尼氟灭酸的水溶性极差,通过Yasuda-Shedlovsky程序外推至零共溶剂,从不同比例的甲醇-水溶液中的表观电离常数确定了水相pKa值。通过紫外光谱法从有机溶剂(二氧六环或甲醇)与水性缓冲液(在等电点pH值)的混合物中确定平衡未电离形式⇌两性离子形式的kz互变异构微观常数,并用于计算其他质子化微观常数。分子的两性离子形式比不带电荷的形式占优势,其浓度在等电pH值时最大。通过摇瓶法在很宽的pH范围内测量了尼氟灭酸在正辛醇/水溶液中的表观分配系数(Papp)。亲脂性曲线(logPapp对pH)在等电点附近其最大值处呈抛物线形状。对于两性药物,在可以确认未电离形式的分配和阴离子的离子对分配的情况下,Papp、PXH0(不带电荷的微物种的微分配系数)和PX-(阴离子的分配系数)之间推导的关系是有效的。微物种的logP值表明尼氟灭酸具有高亲脂性,这与其良好的皮肤渗透和吸收性一致。