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首页> 外文期刊>Drug development and industrial pharmacy >Sustained-release from layered matrix system comprising chitosan and xanthan gum.
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Sustained-release from layered matrix system comprising chitosan and xanthan gum.

机译:从包含壳聚糖和黄原胶的分层基质系统中缓释。

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Sustained-release tablets of propranolol HCl were prepared by direct compression using chitosan and xanthan gum as matrix materials. The effective prolongation of drug release in acidic environment was achieved for matrix containing chitosan together with xanthan gum which prolonged the drug release more extensive than that containing single polymer. Increasing lactose into matrix could adjust the drug release characteristic by enhancing the drug released. Component containing chitosan and xanthan gum at ratio 1:1 and lactose 75% w/w was selected for preparing the layered matrix by tabletting. Increasing the amount of matrix in barrier or in middle layer resulted in prolongation of drug release. From the investigation of drug release from one planar surface, the lag time for drug release through barrier layer was apparently longer as the amount of barrier was enhanced. Least square fitting the experimental dissolution data to the mathematical expressions (power law, first order, Higuchi's and zero order) was performed to study the drug release mechanism. Layering with polymeric matrix could prolong the drug release and could shift the release pattern approach to zero order. The drug release from chitosan-xanthan gum three-layer tablet was pH dependent due to the difference in charge density in different environmental pH. FT-IR and DSC studies exhibited the charge interaction between of NH3+ of chitosan molecule and COO- of acetate or pyruvate groups of xanthan gum molecule. The SEM images revealed the formation of the loose membranous but porous film that was due to the gel layer formed by the polymer relaxation upon absorption of dissolution medium. The decreased rate of polymer dissolution resulting from the decreased rate of solvent penetration was accompanied by a decrease in drug diffusion due to ionic interaction between chitosan and xanthan gum. This was suggested that the utilization of chitosan and xanthan gum could give rise to layered matrix tablet exhibiting sustained drug release.
机译:通过使用壳聚糖和黄原胶作为基质材料直接压制制备盐酸普萘洛尔的缓释片剂。对于含有脱乙酰壳多糖和黄原胶的基质,在酸性环境中有效地延长了药物的释放,与单一聚合物相比,延长了药物的释放。将乳糖增加到基质中可以通过增强药物释放来调节药物释放特性。选择含有比例为1∶1的壳聚糖和黄原胶和75%w / w的乳糖的组分以通过压片制备层状基质。屏障或中间层基质的增加导致药物释放的延长。从对一个平面上药物释放的研究来看,随着屏障量的增加,药物通过屏障层释放的滞后时间显然更长。最小二乘拟合实验溶出度数据与数学表达式(幂定律,一阶,Hi口和零阶),以研究药物释放机理。与聚合物基质分层可以延长药物释放,并使释放方式接近零级。由于不同环境pH下电荷密度的差异,壳聚糖-黄原胶三层片剂的药物释放依赖于pH。 FT-IR和DSC研究表明壳聚糖分子的NH3 +与黄原胶分子的乙酸或丙酮酸基团的COO-之间存在电荷相互作用。 SEM图像显示出疏松的膜状但多孔的膜的形成,这是由于在吸收溶解介质时聚合物松弛而形成的凝胶层。由于壳聚糖和黄原胶之间的离子相互作用,由于溶剂渗透速率降低而导致的聚合物溶解速率降低,同时药物扩散也随之降低。这表明利用壳聚糖和黄原胶可以产生显示出持续药物释放的层状基质片剂。

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