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首页> 外文期刊>Saudi Pharmaceutical Journal >Optimization and evaluation of venlafaxine hydrochloride fast dissolving oral films
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Optimization and evaluation of venlafaxine hydrochloride fast dissolving oral films

机译:Venlafaxine盐酸盐快速溶解口膜的优化与评价

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Three factors, three levels (3 3 ) full factorial design was used to develop venlafaxine HCl fast dissolving oral films (FDOFs) to optimize the concentrations of the film forming polymer; hydroxypropyl methylcellulose HPMC (X1), superdisintegrant; sodium starch glycolate SSG, (X2) and glycerol as the film plasticizer (X3). Effects of the three factors on the disintegration time (Y1), swelling index (Y2), and dissolution efficiency at 15?min; DE (Y3) of the prepared FDOFs were evaluated by using statistical models. The optimized film formula was characterized in term of x-ray powder diffraction (XRPD), differential scanning calorimetry (DSC) and morphological characteristics. Disintegration time was found to increase with the increase in HPMC (X1) concentration, and the shortest disintegration time (21.67?±?2.08?s) was observed in case of F2 formula (lowest HPMC level and highest glycerol level in absence of SSG). The highest swelling index (3.64?±?0.59) was observed in case of film formula F1 (medium concentrations of both HPMC and glycerol and highest SSG concentration. The results also indicated that as the concentration of HPMC increased the DE decreased. SSG (X2), with highest value (72.33?±?1.71%) was recorded for in case of F12 (using 2% HPMC, 5%SSG and 1.5% glycerol). The optimized FDOF formula derived by the statistical models suggested 2% HPMC, 5% SSG, and 1% glycerol. The data obtained from DSC and XRPD revealed no interaction between drug and FDOT excipients. In addition, XRPD studies proved that the venlafaxine HCl was homogeneously dispersed in the film matrix.
机译:三个因素,三个级别(3 3)全部因子设计用于开发Venlafaxine HCl快速溶解口膜(FDOFS)以优化成膜聚合物的浓度;羟丙基甲基纤维素HPMC(X1),超级聚乙烯;淀粉乙醇酸钠SSG,(X2)和甘油作为膜增塑剂(X3)。三种因素对崩解时间(Y1),溶胀指数(Y2)的影响,并在15≤min时溶出效率;通过使用统计模型评估制备的FDOF的DE(Y3)。优化的薄膜配方在X射线粉末衍射(XRPD),差示扫描量热法(DSC)和形态特征中的特征。发现崩解时间随着HPMC(X1)浓度的增加而增加,并且在F2公式的情况下观察到最短的崩解时间(21.67?±2.08℃)(在没有SSG的情况下最低的HPMC水平和最高甘油水平) 。在薄膜式F1(HPMC和甘油的中等浓度和最高SSG浓度的培养基浓度和最高SSG浓度的情况下,观察到最高溶胀指数(3.64?±0.59)。结果表明,随着HPMC的浓度增加,DE减少。SSG(X2 ),在F12(使用2%HPMC,5%SSG和1.5%甘油)的情况下记录最高值(72.33→±1.71%)。由统计模型导出的优化FDOF配方提出了2%HPMC,5 %SSG和1%甘油。从DSC和XRPD获得的数据揭示了药物和嗅觉赋形剂之间的相互作用。此外,XRPD研究证明了Venlafaxine HCl在膜基质中均匀地分散在膜基质中。

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