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羟丙基甲基纤维素释放对单层及双层缓释骨架片的影响

[Effect of release of hydroxypropylmethyl cellulose on single and bilayer sustained-release matrix tablets].

作者信息

Yang Ya-peng, Wang Meng-yuan, Chang Jun-biao, Guo Min-tong

机构信息

School of Pharmaceutics Sciences, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Beijing Da Xue Xue Bao Yi Xue Ban. 2013 Apr 18;45(2):291-6.

Abstract

OBJECTIVE

To study the influence of HPMC as hydrophilic matrix materials and controlled-layer components on the drug release of sustained-release matrix tablets and bilayer tablets.

METHODS

Diltiazem hydrochloride was chosen as the water-soluble model drug to prepare different kinds of matrix tablets and double layer tablets with different formulations, and evaluate how the levels and grades of HPMC affect the drug release in sustained-release tablets and bilayer tablets.

RESULTS

HPMC with high viscosity and the amount of 20%-40% could delay the drug release to certain degree, but it was difficult to further slow down the drug release up to 24 h, especially for a water soluble drug. Combining HPMC with 5%-20% of CMC-Na was proven to be an effective way to achieve the 24 h release profile with the water soluble drug. HPMC was also investigated as a component in the double layer tablet as base layer. Drug release was complicated compared with EC as the base layer in the double layer tablet due to the great swelling ability of HPMC. HPMC's larger swilling let it form a big cap to retard the drug release, which could significantly affect the drug release with a large ratio of the base layer to the drug layer; furthermore increasing the quality of 10%-40% of the base layer and the proportion of HPMC could reduce the initial burst release.

CONCLUSION

The grade/level of HPMC and combinations with other matrix materials had a big impact on the drug release. HPMC could be used in the base layer of the double tablet to alternate the drug release profile, and reduce the initial burst release of the double-layer matrix tablet, and potentially change the drug mechanism.

摘要

目的

研究羟丙甲纤维素(HPMC)作为亲水性基质材料和控释层成分对缓释基质片和双层片药物释放的影响。

方法

选用盐酸地尔硫䓬作为水溶性模型药物,制备不同处方的各类基质片和双层片,评价HPMC的用量和规格对缓释片及双层片药物释放的影响。

结果

高黏度且用量为20%-40%的HPMC能在一定程度上延缓药物释放,但要将药物释放进一步延缓至24小时较为困难,尤其是对于水溶性药物。事实证明,将HPMC与5%-20%的羧甲基纤维素钠(CMC-Na)联用是实现水溶性药物24小时释放曲线的有效方法。HPMC还作为双层片的基层成分进行了研究。与双层片中以乙基纤维素(EC)作为基层相比,由于HPMC具有较大的溶胀能力,其药物释放情况更为复杂。HPMC较大的溶胀使其形成一个大的帽状物来阻滞药物释放,这在基层与药物层比例较大时会显著影响药物释放;此外,将基层质量增加10%-40%并提高HPMC比例可减少初始突释。

结论

HPMC的规格/用量及其与其他基质材料的组合对药物释放有很大影响。HPMC可用于双层片的基层以改变药物释放曲线,减少双层基质片的初始突释,并可能改变药物作用机制。

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