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Physico-Chemical Characterization and In Vitro Dissolution Assessment of Clonazepam—Cyclodextrins Inclusion Compounds

机译:氯硝西am-环糊精包合物的理化性质和体外溶出度评估

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摘要

The objectives of this research were to prepare and characterize inclusion complexes of clonazepam with β-cyclodextrin and hydroxypropyl-β-cyclodextrin and to study the effect of complexation on the dissolution rate of clonazepam, a water-insoluble lipid-lowering drug. The phase-solubility profiles with both cyclodextrins were classified as AP-type, indicating the formation of 2:1 stoichiometric inclusion complexes. Gibbs free energy values were all negative, indicating the spontaneous nature of clonazepam solubilization, and they decreased with increase in the cyclodextrins concentration, demonstrating that the reaction conditions became more favorable as the concentration of cyclodextrins increased. Complexes of clonazepam were prepared with cyclodextrins by various methods such as kneading, coevaporation, and physical mixing. The complexes were characterized by Fourier transform infrared spectroscopy and differential scanning calorimetry studies. These studies indicated that complex prepared kneading and coevaporation methods showed successful inclusion of the clonazepam molecule into the cyclodextrins cavity. The complexation resulted in a marked improvement in the solubility and wettability of clonazepam. Among all the samples, complex prepared with hydroxypropyl-β-cyclodextrin by kneading method showed highest improvement in in vitro dissolution rate of clonazepam. Mean dissolution time of clonazepam decreased significantly after preparation of complexes and physical mixture of clonazepam with cyclodextrins. Similarity factor indicated significant difference between the release profiles of clonazepam from complexes and physical mixture and from plain clonazepam. Tablets containing complexes prepared with cyclodextrins showed significant improvement in the release profile of clonazepam as compared to tablet containing clonazepam without cyclodextrins.
机译:这项研究的目的是制备和表征氯硝西am与β-环糊精和羟丙基-β-环糊精的包合物,并研究络合对水不溶性降血脂药氯硝西the溶出度的影响。两种环糊精的相溶解度曲线均归类为AP型,表明形成了2:1的化学计量包合物。吉布斯自由能值均为负,表明氯硝西am增溶的自发性,并且随着环糊精浓度的增加而降低,表明反应条件随着环糊精浓度的增加而变得更有利。氯硝西am的配合物是通过各种方法(例如捏合,共蒸发和物理混合)与环糊精制备的。通过傅立叶变换红外光谱法和差示扫描量热法研究表征该复合物。这些研究表明,复杂的捏合和共蒸发方法表明氯硝西am分子成功地包含在环糊精腔中。该络合导致氯硝西am的溶解度和润湿性显着改善。在所有样品中,羟丙基-β-环糊精通过捏合法制备的复合物在体外对氯硝西am的溶出率有最大的提高。制备氯硝西am与环糊精的复合物和物理混合物后,氯硝西am的平均溶解时间显着减少。相似因子表明氯硝西am从复合物和物理混合物以及普通氯硝西am的释放曲线之间存在显着差异。与含有不含环糊精的氯硝西am的片剂相比,含有用环糊精制备的复合物的片剂在氯硝西p的释放曲线上显示出显着改善。

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