首页> 外文期刊>Pharmaceutics >Feasibility of Using Gluconolactone, Trehalose and Hydroxy-Propyl Gamma Cyclodextrin to Enhance Bendroflumethiazide Dissolution Using Lyophilisation and Physical Mixing Techniques
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Feasibility of Using Gluconolactone, Trehalose and Hydroxy-Propyl Gamma Cyclodextrin to Enhance Bendroflumethiazide Dissolution Using Lyophilisation and Physical Mixing Techniques

机译:使用葡萄糖酸内酯,海藻糖和羟丙基γ-环糊精通过冻干和物理混合技术提高苯氟甲酰肼溶解的可行性

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Purpose: Hydrophobic drugs are facing a major challenge in dissolution rate enhancement and solubility in aqueous solutions; therefore, a variety of methods have been used to improve dissolution rate and/or solubility of bendroflumethiazide as a model hydrophobic drug. Methods: In this study, two main methods (physical mixing and lyophilisation) were used with gluconolactone, hydroxyl propyl γ-ccyclodextrin, and trehalose to explore this challenge. Bendroflumethiazide, practically insoluble in water, was mixed with one of the three excipients gluconolactone, hydroxyl propyl γ-cyclodextrin, and trehalose in three different ratios 1:1, 1:2, 1:5. To the best of our knowledge, the dissolution of the drug has not been previously enhanced by using either these methods or any of the used excipients. Samples containing drug and each of the excipients were characterized via dissolution testing, Fourier Transform infra-red spectroscopy, differential scanning calorimetry, and scanning electron microscopy. Results: The used methods showed a significant enhancement in dug dissolution rate; physical mixing significantly, p 0.05, increased the percentage of the drug released with time; for example, bendroflumethiazide dissolution in distilled water was improved from less than 20% to 99.79% within 90 min for physically mixed drug-cyclodextrin 1:5. The lyophilisation process was enhanced and the drug dissolution rate and the highest drug dissolution was achieved for (drug-gluconolactone 1:1) with 98.98% drug release within 90 min. Conclusions: the physical mixing and freeze drying processes significantly increased the percentage of drug release with time.
机译:目的:疏水性药物在提​​高溶解速度和在水溶液中的溶解度方面面临着重大挑战。因此,已使用多种方法来提高作为模型疏水性药物的苯并氟甲酰肼的溶解速率和/或溶解度。方法:在这项研究中,两种主要方法(物理混合和冻干)与葡糖酸内酯,羟丙基γ-c-环糊精和海藻糖一起使用以探讨这一挑战。将实际上不溶于水的苯氟甲酰叠氮与三种赋形剂葡糖酸内酯,羟丙基γ-环糊精和海藻糖之一以三种不同的比例1:1、1:2、1:5混合。就我们所知,通过使用这些方法或任何使用的赋形剂,药物的溶解度以前并未得到提高。通过溶出度测试,傅立叶变换红外光谱,差示扫描量热法和扫描电子显微镜对包含药物和每种赋形剂的样品进行表征。结果:所使用的方法显示出显着的溶出度提高;物理混合显着,p <0.05,随时间增加了药物释放的百分比;例如,对于物理混合的药物-环糊精1:5,在90分钟内苯氟甲酰肼在蒸馏水中的溶解度从不到20%提高到99.79%。冻干过程得到了增强,(药物-葡糖酸内酯1:1)在90分钟内释放了98.98%的药物,药物溶解速率和最高药物溶解度得以实现。结论:物理混合和冷冻干燥过程随时间显着增加了药物释放的百分比。

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