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In vitro release testing of matrices based on starch-methyl methacrylate copolymers: Effect of tablet crushing force, dissolution medium pH and stirring rate

机译:基于淀粉-甲基丙烯酸甲酯共​​聚物的基质的体外释放测试:片剂压碎力,溶出介质pH和搅拌速率的影响

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Direct-compressed matrix tablets were obtained from a variety of potato starch-methyl methacrylate copolymers1 as sustained-release agents, using anhydrous theophylline as a model drug. The aim of this work was to investigate the influence of the copolymer type, the tablet crushing force and dissolution variables such as the pH of the dissolution medium and the agitation intensity on the in vitro drug release behaviour of such matrices. Commercial sustained-release theophylline products (Theo-Dur? 100 mg, Theolair? 175 mg) were used as standards. Test formulations were compacted into tablets at three different crushing force ranges (70-80, 90-100 and 110-120 N) to examine the effect of this factor on the porous network and drug release kinetics. In vitro release experiments were conducted in a pH-changing medium (1.2-7.5) with basket rotation speeds in the range 25-100 r.p.m. to simulate the physiological conditions of the gastrointestinal tract. The release rate of theophylline was practically not affected by pH in the case of Theo-Dur? and HSMMA matrices. In contrast, Theolair ? and CSMMA tablets demonstrated a biphasic drug release pattern, which appeared to be sensitive to the pH of the dissolution medium. An increase in the crushing force of the copolymer matrices was accompanied by a reduction of the matrix porosity, although the porous network depends markedly on the type of copolymer, having a strong influence on the drug release kinetics. Mathematical modelling of release data shows a Fickian diffusion or anomalous transport mechanism. Based on the similarity factor f2, FD-HSMMA, OD-CSMMA and FD-CSMMA at 90-100 N were selected for agitation studies. In general, all formulations showed an agitation speed-dependent release, with Theo-Dur? and FD-CSMMA matrices being the less susceptible to this factor.
机译:使用无水茶碱作为模型药物,从多种马铃薯淀粉-甲基丙烯酸甲酯共​​聚物1作为缓释剂获得直接压缩的基质片剂。这项工作的目的是研究共聚物类型,压片力和溶出度变量(例如溶出介质的pH值和搅拌强度)对此类基质体外药物释放行为的影响。以市售缓释茶碱产品(Theo-Dur?100 mg,Theolair?175 mg)为标准。将测试制剂在三个不同的压碎力范围(70-80、90-100和110-120 N)下压制成片剂,以检查该因素对多孔网络和药物释放动力学的影响。体外释放实验是在pH值变化的介质(1.2-7.5)中进行的,篮转速在25-100 r.p.m范围内。模拟胃肠道的生理状况。对于Theo-Dur ?,茶碱的释放速率实际上不受pH的影响。和HSMMA矩阵。相比之下,Theolair? CSMMA片剂和CSMMA片剂表现出双相药物释放模式,似乎对溶出介质的pH敏感。尽管多孔网络明显取决于共聚物的类型,但是共聚物基体的压碎力的增加伴随着基质孔隙率的降低,这对药物释放动力学有很大的影响。释放数据的数学模型显示了Fickian扩散或异常传输机制。基于相似因子f2,选择90-100 N的FD-HSMMA,OD-CSMMA和FD-CSMMA进行搅拌研究。总的来说,所有的配方都具有Theo-Dur?的搅拌速度依赖性释放。 FD-CSMMA矩阵对此因素的影响较小。

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