Fukuda Mamoru, Goto Akinori
Development Research Laboratories, Kyorin Pharmaceutical Co., Ltd., Tochigi, Japan.
Chem Pharm Bull (Tokyo). 2011;59(10):1221-6. doi: 10.1248/cpb.59.1221.
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.
利用L-薄荷醇的物理化学性质以及熔融疏水性聚合物渗透到片剂中,研制出一种新型的中心有腔的漂浮型缓释片剂。通过直接压片法制备了一种在外层含有法莫替丁作为模型药物的干包衣片剂,其核心为L-薄荷醇。将该片剂置于80°C的烘箱中以去除片剂中的L-薄荷醇核心。然后将所得片剂浸入90°C的熔融疏水性聚合物中。使用美国药典(USP)32装置2(桨板100转/分钟)和900毫升0.01N盐酸研究片剂的浮力和药物释放特性。片剂中的L-薄荷醇核心在放入烘箱90分钟后通过外层的通道完全消失,且无药物流出,从而形成中空片剂。中空片剂在溶出介质中短时间漂浮,由于片剂崩解,药物释放迅速。当中空片剂浸入熔融疏水性聚合物中1分钟时,由于片剂外壳内形成蜡基质,药物快速释放被显著延迟,且片剂在介质上漂浮至少6小时。当使用Lubri wax®作为聚合物时,片剂显示出最慢的缓释效果。另一方面,由于单硬脂酸甘油酯(GMS)疏水性低,使用它可获得更快的缓释性能。本研究所得结果表明,漂浮片剂的药物释放速率可通过疏水性聚合物的选择以及疏水性聚合物的联合使用来控制。