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Drug release from E chemistry hypromellose tablets using the Bio-Dis USP type III apparatus: An evaluation of the effect of systematic agitation and ionic strength

机译:使用Bio-Dis Usp III型装置从E化学羟丙甲纤维素片剂中释放药物:评估系统搅动和离子强度的影响

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摘要

The aim of the study was to evaluate the effect of systematic agitation, increasing ionic strength and gel strength on drug release from a gel-forming matrix (HPMC E10M, E4M and E50LV) using USP type III Bio-Dis apparatus with theophylline as a model drug. The triboelectric charging; particle sizing, water content, true density and SEM of all the hypromellose grades, theophylline and formulated blends were characterised. The results showed that balanced inter-particulate forces exist between drug particles and the excipient surface and this enabled optimum charge to mass ratio to be measured. Agitation and ionic strength affected drug release from E50LV and E4M tablet matrices in comparison to the E10M tablet matrices. Drug release increased substantially when water was used as the dissolution media relative to media at pH 1.2 (containing 0.4 M NaCl). The results showed all f2 values for the E10M tablet matrices were above 50 suggesting the drug release from these tablet matrices to be similar. Rheological data also explained the different drug release behaviour with the stress required to yield/erode being 1 Pa, 150 Pa, and 320 Pa, for the E50LV, E4M and E10M respectively. The stiffness of the gel was also found to be varied from 2.5 Pa, 176.2 Pa and 408.3 Pa for the E50LV, E4M and E10M respectively. The lower G’ value can be explained by a softer gel being formed after tablet introduction into the dissolution media thereby indicating faster drug release.
机译:本研究的目的是使用USP III型Bio-Dis装置以茶碱为模型,评估系统搅拌,增加离子强度和凝胶强度对从凝胶形成基质(HPMC E10M,E4M和E50LV)释放的药物的影响。药品。摩擦带电;表征了所有羟丙甲纤维素等级,茶碱和配方混合物的颗粒大小,含水量,真密度和SEM。结果表明,在药物颗粒和赋形剂表面之间存在平衡的微粒间力,这使得可以测量最佳的电荷质量比。与E10M片剂基质相比,搅拌和离子强度影响药物从E50LV和E4M片剂基质中释放。相对于pH值为1.2(含0.4 M NaCl)的介质,使用水作为溶出介质时,药物的释放显着增加。结果显示,E10M片剂基质的所有f2值均高于50,表明从这些片剂基质释放的药物相似。流变学数据还解释了不同的药物释放行为,对于E50LV,E4M和E10M,屈服/腐蚀所需的应力分别为1 Pa,150 Pa和320 Pa。对于E50LV,E4M和E10M,还发现凝胶的刚度分别从2.5 Pa,176.2 Pa和408.3 Pa变化。较低的G'值可以通过将片剂引入溶出介质后形成较软的凝胶来解释,从而表明药物释放更快。

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