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含对乙酰氨基酚新型整体羟丙基甲基纤维素基质片剂的处方、释放特性及生物利用度

Formulation, release characteristics and bioavailability of novel monolithic hydroxypropylmethylcellulose matrix tablets containing acetaminophen.

作者信息

Cao Qing-Ri, Choi Yun-Woong, Cui Jing-Hao, Lee Beom-Jin

机构信息

National Research Laboratory for Bioavailability Control, College of Pharmacy, Kangwon National University, Chuncheon, Republic of Korea.

出版信息

J Control Release. 2005 Nov 28;108(2-3):351-61. doi: 10.1016/j.jconrel.2005.08.004. Epub 2005 Sep 12.

Abstract

Effect of incorporating pharmaceutical excipients on the in vitro release profiles and the release mechanism of monolithic hydroxypropylmethylcellulose (4000 cps) matrix tablets (m-HPMC tablets) in terms of mimicking the dual drug release character of bi-layered Tylenol ER tablets was studied. We also compared the in vitro release profiles of optimized m-HPMC matrix tablet and Tylenol ER tablet in water, pH 1.2 gastric fluid, and pH 6.8 intestinal fluid, and in vivo drug bioavailabilities in healthy human volunteers. Acetaminophen was used as the model drug. The m-HPMC tablets were prepared using a wet granulation method followed by direct compression. Release profiles and swelling rates of m-HPMC tablets were found to be highly influenced by the types and amounts of pharmaceutical excipients incorporated. Starch 1500 (Prejel) and sodium lauryl sulfate (SLS) played a key role in determining the dissolution rate of m-HPMC tablets. Additional excipients, i.e., microcrystalline cellulose (Avicel PH101) and NaH2PO4 were used to tune the release profiles of m-HPMC tablets. The effect of pharmaceutical excipients on drug release from HPMC-based matrix tablets was found to be mainly due to a change in hydrophilic gel expansion and on physical interactions between the drug and HPMC. The optimized m-HPMC tablet with a balanced ratio of Prejel, SLS, Avicel PH101, and NaH2PO4 in the formulation showed dual release profiles in water, pH 1.2 gastric fluid, and pH 6.8 intestinal fluid in vitro. Dual release was defined as immediate drug release within few minutes followed by extended release over 8 h. The similarity factors of m-HPMC tablets and bi-layered Tylenol ER tablets were 79.8, 66.1, and 82.7 in water, gastric fluid and intestinal fluid, respectively, indicating the equivalence of the two release profiles. No significant in vivo bioavailability differences were observed in healthy human volunteers. The developed m-HPMC tablet with dual release characteristics can be easily prepared using a conventional high-speed tablet machine and could provide an alternative to commercially available bilayered Tylenol ER tablets.

摘要

研究了加入药用辅料对整体型羟丙基甲基纤维素(4000厘泊)基质片(m-HPMC片)体外释放曲线和释放机制的影响,旨在模拟双层泰诺林缓释片的双相释药特性。我们还比较了优化后的m-HPMC基质片和泰诺林缓释片在水、pH 1.2胃液、pH 6.8肠液中的体外释放曲线,以及在健康人体志愿者体内的药物生物利用度。对乙酰氨基酚用作模型药物。m-HPMC片采用湿法制粒后直接压片的方法制备。发现m-HPMC片的释放曲线和溶胀率受加入的药用辅料的种类和用量的影响很大。淀粉1500(普瑞杰)和十二烷基硫酸钠(SLS)在决定m-HPMC片的溶出速率方面起关键作用。另外还使用了辅料,即微晶纤维素(微晶纤维素PH101)和磷酸二氢钠来调节m-HPMC片的释放曲线。发现药用辅料对基于HPMC的基质片中药物释放的影响主要是由于亲水性凝胶膨胀的变化以及药物与HPMC之间的物理相互作用。制剂中普瑞杰、SLS、微晶纤维素PH101和磷酸二氢钠比例平衡的优化m-HPMC片在体外水、pH 1.2胃液和pH 6.8肠液中显示出双相释放曲线。双相释放定义为在几分钟内药物立即释放,随后在8小时内持续释放。m-HPMC片和双层泰诺林缓释片在水、胃液和肠液中的相似因子分别为79.8、66.1和82.7,表明两种释放曲线具有等效性。在健康人体志愿者中未观察到显著的体内生物利用度差异。所研制的具有双相释放特性的m-HPMC片可使用传统高速压片机轻松制备,并且可以作为市售双层泰诺林缓释片的替代品。

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