Suzuki H, Sunada H
Fuji Laboratory, Janssen-Kyowa Co., Ltd., Shizuoka, Japan.
Chem Pharm Bull (Tokyo). 1998 Jan;46(1):125-30. doi: 10.1248/cpb.46.125.
Nicotinamide is a hydrotropic agent that has been demonstrated to solubilize a wide variety of drugs through complexation. Past investigations on the potential interaction of nicotinamide with a solubilized drug have inadequately focused on aliphatic hydrotropes. This study examined the mechanism for the hydrotropic solubilization of nifedipine, a poorly water-soluble drug, in the aqueous solution of nicotinamide using not only nicotinamide analogues but also urea analogues as aliphatic hydrotropes. The values of stability constants, K1:2, at different temperatures in nicotinamide solution were determined by the phase solubility technique, and were utilized to estimate the thermodynamic parameters of complex formation between nifedipine and nicotinamide. The enthalpy change values suggested the participation of intermolecular forces other than hydrogen bonding in complexion. The aqueous solubility of nifedipine was measured in the presence of nicotinamide, urea and their analogues: N-methylnicotinamide, N,N-diethylnicotinamide, nipecotamide, methylurea, ethylurea and butylurea. The drug solubility increased in proportion to the amount of alkyl substituent on the amide nitrogen, and the solubilizing effect of butylurea was as high as that of nicotinamide. Furthermore, the relationship between the logarithmic drug solubilities in 1.0 M aqueous solutions of nicotinamide or urea analogues versus the logarithmic octanol-water partition coefficient values of ligands as an indication of hydrophobicity was found to be linear. The significant contributor to the hydrotropic solubilization of nifedipine with nicotinamide was therefore the ligand hydrophobicity rather than the aromaticity of the pyridine ring.
烟酰胺是一种助溶试剂,已被证明可通过络合作用使多种药物溶解。过去关于烟酰胺与溶解药物潜在相互作用的研究对脂肪族助溶剂关注不足。本研究不仅使用烟酰胺类似物,还使用脲类似物作为脂肪族助溶剂,考察了难溶性药物硝苯地平在烟酰胺水溶液中的助溶机制。采用相溶解度技术测定了烟酰胺溶液在不同温度下的稳定常数K1:2值,并用于估算硝苯地平和烟酰胺之间络合物形成的热力学参数。焓变值表明在络合过程中除了氢键之外还存在其他分子间作用力。在烟酰胺、尿素及其类似物(N-甲基烟酰胺、N,N-二乙基烟酰胺、哌啶酰胺、甲基脲、乙基脲和丁基脲)存在的情况下测定了硝苯地平的水溶性。药物溶解度与酰胺氮上烷基取代基的数量成正比,丁基脲的增溶效果与烟酰胺相当。此外,发现硝苯地平在1.0 M烟酰胺或脲类似物水溶液中的对数溶解度与作为疏水性指标的配体的对数辛醇-水分配系数值之间呈线性关系。因此,烟酰胺对硝苯地平的助溶作用的重要贡献因素是配体的疏水性而非吡啶环的芳香性。