Ghafourian Taravat, Safari Arezoo, Adibkia Khosro, Parviz Fatemeh, Nokhodchi Ali
Drug Applied Research Center and School of Pharmacy, Tabriz University of Medical Sciences, Daneshgah Street, Tabriz, Iran.
J Pharm Sci. 2007 Dec;96(12):3334-51. doi: 10.1002/jps.20990.
This investigation is aimed at characterization of the mode of release from two different substitution types of HPMC and the effect of chemical structure of drugs using the QSPR (Quantitative - Structure-Property Relationship) technique. To this end, release profiles of HPMC matrices of several drugs containing the same formulation and compressed at a constant pressure were studied. QSPR method was used to establish statistically significant relationships between release parameters and the structural descriptors. Structural descriptors consisted of molecular mechanical, quantum mechanical and graph-theoretical parameters, as well as the partition coefficient and the aqueous solubility of the drugs. The results showed that the most important factors determining the release profile from both HPMC K4M and HPMC E4M matrices were the aqueous solubility of drugs (which could be substituted efficiently by dipole moment) and the size of the drug molecules. Comparison of drug release from matrices prepared using the two grades of HPMC showed very distinct differences for some drugs, as evaluated by the similarity factor. The results indicated that the source of the difference could be sought in the drug properties (as exemplified by the aqueous solubility and surface area) as well as the rate of erosion (that depends mainly on the polymer type).
本研究旨在利用定量构效关系(QSPR)技术表征两种不同取代类型的羟丙甲纤维素(HPMC)的释放模式以及药物化学结构的影响。为此,研究了几种含有相同配方并在恒定压力下压片的药物的HPMC基质的释放曲线。采用QSPR方法建立释放参数与结构描述符之间具有统计学意义的关系。结构描述符包括分子力学、量子力学和图论参数,以及药物的分配系数和水溶性。结果表明,决定HPMC K4M和HPMC E4M基质释放曲线的最重要因素是药物的水溶性(可用偶极矩有效替代)和药物分子大小。通过相似性因子评估,比较使用两种等级HPMC制备的基质的药物释放情况,发现某些药物存在非常明显的差异。结果表明,差异的来源可从药物性质(如水溶性和表面积)以及侵蚀速率(主要取决于聚合物类型)中寻找。