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首页> 外文期刊>Pharmacology & Pharmacy >Solubility Enhancement of Domperidone Fast Disintegrating Tablet Using Hydroxypropyl-β-Cyclodextrin by Inclusion Complexation Technique
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Solubility Enhancement of Domperidone Fast Disintegrating Tablet Using Hydroxypropyl-β-Cyclodextrin by Inclusion Complexation Technique

机译:羟丙基-β-环糊精包合物包合物提高多潘立酮速崩片的溶解度

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摘要

Domperidone Maleate (DOM), an antiemetic drug, has been used in treatment of adults and children. It has low aqueous solubility and hence low bioavailability. In present study, an attempt has been made to enhance the solubility of DOM by inclusion complexation with Hydroxypropyl-β-Cyclodextrin (HP-β-CD) using kneading technique and formulation of fast disintegrating tablets by using Sodium Starch Glycolate as superdisintegrant. Solubility analysis of DOM in different concentrations of HP-β-CD was carried out. Design of experiment (DOE) is done by using MINITAB 15.1 software to find out the variable for dissolution and disintegration time. HP-β-CD and SSG were identified as the variable for disintegration time and dissolution. For optimization of the concentration of HP-β-CD and SSG, two factors at two levels design through central composite design (CCD) were used which gave 13 formulations. All formulations are evaluated for characteristics such as weight variation, hardness, friability, disintegration time and dissolution of drug. Solubility of DOM increases linearly with increase in concentration of HP-β-CD. The optimum concentration of HP-β-CD is found to be in 1:2 molar ratios and SSG of 7%. The In-Vitro dissolution studies of optimized formulation and market sample were carried out in USP type II apparatus at different time intervals of 5, 10, 15 and 30 minutes at 50 rpm in 0.1 N HCl. The dissolution and disintegration time of optimized formulation is found better than market sample.
机译:马来酸多潘立酮(DOM)是一种止吐药,已用于治疗成人和儿童。它的水溶性低,因此生物利用度低。在本研究中,已经尝试通过使用捏合技术与羟丙基-β-环糊精(HP-β-CD)包合络合并使用淀粉糖基乙醇酸钠作为超崩解剂配制快速崩解片来提高DOM的溶解度。在不同浓度的HP-β-CD中进行了DOM的溶解度分析。使用MINITAB 15.1软件进行实验设计(DOE),以找出溶解和崩解时间的变量。 HP-β-CD和SSG被确定为崩解时间和溶出度的变量。为了优化HP-β-CD和SSG的浓度,使用了通过中央复合设计(CCD)在两个级别进行设计的两个因素,得出了13种配方。评价所有制剂的特征,例如重量变化,硬度,脆性,崩解时间和药物溶解。 DOM的溶解度随H​​P-β-CD浓度的增加而线性增加。发现HP-β-CD的最佳浓度为1:2摩尔比,SSG为7%。在USP II型仪器中,在0.1 N HCl中以50 rpm的5、10、15和30分钟的不同时间间隔进行了优化配方和市售样品的体外溶出研究。发现优化制剂的溶解和崩解时间比市场样品更好。

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