Hino T, Ford J L
School of Pharmacy and Chemistry, James Parsons Building, Liverpool John Moores University, Byrom Street, Liverpool L3 3AF, UK.
Int J Pharm. 2001 Sep 11;226(1-2):53-60. doi: 10.1016/s0378-5173(01)00770-0.
The effect of nicotinamide on the properties of aqueous hydroxypropylmethylcellulose (HPMC) solutions was studied. Rheological studies showed that solutions of HPMC of concentration less than 3.0 w/v.% did not form gels and exhibited Newtonian flow patterns at 25 degrees C. The inclusion of nicotinamide increased the viscosity of HPMC solutions, which indicates that nicotinamide expanded the HPMC coils in aqueous solution. When the temperature of the solutions was raised, they formed gels that were detected by viscometry and oscillation tests as abrupt increases in viscosity, storage modulus and loss modulus and an abrupt decrease in loss angle. Nicotinamide exhibited a salting in effect on the HPMC solutions resulting in an increase in gelation temperatures and cloud points. These effects are considered to be due to the hydrogen-bonding of nicotinamide to HPMC molecules, which was suggested by a shift to a longer wavelength of the UV spectra of aqueous nicotinamide solutions by the addition of HPMC. These results suggested that nicotinamide has affinity with the hydrophilic groups of HPMC.
研究了烟酰胺对羟丙基甲基纤维素(HPMC)水溶液性质的影响。流变学研究表明,浓度低于3.0 w/v.% 的HPMC溶液在25℃时不会形成凝胶,而是呈现牛顿流动模式。加入烟酰胺会增加HPMC溶液的粘度,这表明烟酰胺在水溶液中使HPMC分子链伸展。当溶液温度升高时,它们会形成凝胶,通过粘度测定和振荡试验检测到粘度、储能模量和损耗模量突然增加,损耗角突然减小。烟酰胺对HPMC溶液表现出盐溶效应,导致凝胶化温度和浊点升高。这些效应被认为是由于烟酰胺与HPMC分子之间形成了氢键,这一点通过在烟酰胺水溶液中加入HPMC后紫外光谱向更长波长的移动得到了证实。这些结果表明烟酰胺与HPMC的亲水基团具有亲和力。