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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Properties of Gastroretentive Sustained Release Tablets Prepared by Combination of Melt/Sublimation Actions of L -Menthol and Penetration of Molten Polymers into Tablets
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Properties of Gastroretentive Sustained Release Tablets Prepared by Combination of Melt/Sublimation Actions of L -Menthol and Penetration of Molten Polymers into Tablets

机译:通过L-minthol熔融/升华作用的组合制备的胃激节持续释放片剂的性质,并将熔融聚合物的渗透到片剂中

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A novel floating sustained release tablet having a cavity in the center was developed by utilizing the physicochemical properties of L -menthol and the penetration of molten hydrophobic polymer into tablets. A dry-coated tablet containing famotidine as a model drug in outer layer was prepared with a L -menthol core by direct compression. The tablet was placed in an oven at 80°C to remove the L -menthol core from tablet. The resulting tablet was then immersed in the molten hydrophobic polymers at 90°C. The buoyancy and drug release properties of tablets were investigated using United States Pharmacopeia (USP) 32 Apparatus 2 (paddle 100 rpm) and 900 ml of 0.01 N HCl. The L -menthol core in tablets disappeared completely through pathways in the outer layer with no drug outflows when placed in an oven for 90 min, resulting in a formation of a hollow tablet. The hollow tablets floated on the dissolution media for a short time and the drug release was rapid due to the disintegration of tablet. When the hollow tablets were immersed in molten hydrophobic polymers for 1 min, the rapid drug release was drastically retarded due to a formation of wax matrices within the shell of tablets and the tablets floated on the media for at least 6 h. When Lubri wax? was used as a polymer, the tablets showed the slowest sustained release. On the other hand, faster sustained release properties were obtained by using glyceryl monostearate (GMS) due to its low hydrophobic nature. The results obtained in this study suggested that the drug release rate from floating tablets could be controlled by both the choice of hydrophobic polymer and the combined use of hydrophobic polymers.
机译:通过利用L-MILDHOH的物理化学性能和熔融的疏水聚合物渗透到片剂中,开发了中心具有腔体的新型浮动持续释放片。通过直接压缩用L-MINTHOL芯制备含有FAMOTIDINE作为模型药物的干涂层片剂。将片剂置于80℃的烘箱中,以从片剂中除去L-minterhol芯。然后将所得片剂浸入90℃的熔融疏水聚合物中。使用美国药典(USP)32装置2(桨式100rpm)和900ml的0.01n HCl来研究片剂的浮力和药物释放性能。平板电脑中的L-MINTHOL芯通过外层中的途径完全消失,当放置在烘箱中时没有药物流出90分钟,导致形成中空片的形成。漂浮在溶解介质上的中空片短时间,并且由于片剂的崩解,药物释放是快速的。当中空片浸入熔融疏水聚合物中1分钟时,由于片剂壳内的蜡基质的形成,并且在培养基上漂浮至少6小时,快速延迟了快速药物释放。当使用Lubri Wax 作为聚合物时,片剂显示出最慢的持续释放。另一方面,由于其低疏水性质,通过使用甘油单晶酸盐(GMS)获得更快的缓释性能。本研究中获得的结果表明,来自浮动片剂的药物释放速率可以通过选择疏水聚合物的选择和疏水性聚合物的组合使用来控制。

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