FORMULATING β-CYCLODEXTRIN INCLUSION COMPLEXES FOR SOLUTION STABILITY ENHANCEMENT OF GRISEOFULVIN

Anjali Sahu, Khushi Chouksey, K. Ganju
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Abstract

Griseofulvin is a poorly soluble antifungal antibiotic drug, the solubility of which can be enhanced by complexation with β-cyclodextrin. The inclusion complex was prepared by Physical and Kneading method in various molar ratios of 1:1, 1:2 and 2:1 of the drug and β-cyclodextrin, respectively. IR spectra of drug, polymer and a physical mixture of drug and polymer were obtained using FT-IR. The inclusion complex was characterized and evaluated by determination of aqueous solubility, determination of pH stability, estimation of griseofulvin in complexes and stability study. The aqueous solubility of the GCD inclusion complexes was determined using the Higuchi-Connor method. The results indicated that the use of kneading method for preparation of complexes was more effective than the physical mixture method. The inclusion complexes were on the other hand was able to prevent the degradation of griseofulvin at all the pH. The degradation of griseofulvin from the inclusion complexes was found to be prevented and around 20-35% drug degraded in the acidic buffer while 40-50% drug degraded in the neutral and alkaline buffers. It was very much evident from the stability data that the inclusion complexes were helpful in improving the solution stability of griseofulvin. Complex F5 was used as the complex of choice for stability analysis as it exhibited the highest aqueous solubility amongst all the inclusion complexes that were prepared. The results reveal that the kneading method was helpful in incorporating higher amount of griseofulvin in the complex, the inclusion complex of griseofulvin (F5) was subjected to short term accelerated stability testing by storing the complexes at room temperature and at 45ºC. The samples were analyzed at an interval of one week, three weeks and six weeks for their physical appearance and drug content values. No appreciable changes observed with the above parameters.
制备β-环糊精包合物增强灰黄霉素溶液稳定性
灰黄霉素是一种难溶性抗真菌药物,与β-环糊精络合可提高其溶解度。以药物与β-环糊精的摩尔比分别为1:1、1:2和2:1,采用物理和揉捏法制备包合物。用傅里叶变换红外光谱法获得了药物、聚合物和药物与聚合物的物理混合物的红外光谱。通过水溶性测定、pH稳定性测定、灰黄霉素在配合物中的含量测定和稳定性研究对包合物进行了表征和评价。采用Higuchi-Connor法测定了GCD包合物的水溶性。结果表明,采用揉捏法制备配合物比物理混合法更有效。另一方面,包合物能够阻止灰黄霉素在所有ph值下的降解。发现包合物对灰黄霉素的降解被阻止,在酸性缓冲液中约有20-35%的药物降解,而在中性和碱性缓冲液中有40-50%的药物降解。稳定性数据表明,包合物有助于提高灰黄霉素的溶液稳定性。配合物F5作为稳定性分析的选择,因为它在所有制备的包合物中表现出最高的水溶性。结果表明,揉制法有利于在配合物中加入较多的灰黄霉素,将灰黄霉素包合物(F5)在室温和45℃下进行短期加速稳定性测试。每隔一周、三周和六周对样品的物理外观和药物含量值进行分析。上述参数未见明显变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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