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盐酸雷尼替丁微丸的肠溶衣渗漏:溶出度及血药数据预测

Leaky enteric coating on ranitidine hydrochloride beads: dissolution and prediction of plasma data.

作者信息

Bendas Ehab R, Ayres James W

机构信息

Oregon State University, Corvallis, OR, USA.

出版信息

Eur J Pharm Biopharm. 2008 Aug;69(3):977-85. doi: 10.1016/j.ejpb.2008.02.019. Epub 2008 Feb 29.

Abstract

The present research is based on the hypothesis that leaky enteric-coated pellets formulations are able to provide sustained input for drugs that have an absorption window, such as ranitidine hydrochloride, without jeopardizing their bioavailability. Leaky enteric-coated pellets formulations are defined as enteric-coated pellets that allow some of the drug to be released from the formulation in gastric fluid. Different approaches to making leaky enteric-coated pellets were investigated using extrusion-spheronization followed by spray coating. Leaky enteric coats were formulated using a commonly used enteric polymer, Eudragit L 30 D-55, combined with soluble compounds including lactose, PEG 8000 and surfactants (Span 60 (hydrophobic) or Tween 80 (hydrophilic)). The rate of drug release from the formulations in simulated gastric fluid can be tailored by varying the additive's amount or type. All leaky enteric-coated formulations studied completely released the drugs within 30 min after changing dissolution medium to phosphate buffer, pH 6. Predictions of plasma concentration-time profiles of the model drug ranitidine hydrochloride from leaky enteric-coated pellets in fasted conditions and from immediate-release formulations were performed using computer simulations. Simulation results are consistent with a hypothesis that leaky enteric-coated pellets formulations provide sustained input for drugs shown to have an absorption window without decreasing bioavailability. The sustained input results from the combined effects of the formulation and GI transit effects on pellets. The present research demonstrates a new application of knowledge about gastrointestinal transit effects on drug formulations. It also shows that enteric-coating polymers have new applications in areas other than the usual enteric-coated formulations. The hypothesis that a leaky enteric-coated pellets formulation may maintain or increase the bioavailability of drugs that have a window of absorption is still to be confirmed by further in vivo studies.

摘要

本研究基于以下假设

肠溶包衣微丸漏释制剂能够为具有吸收窗的药物(如盐酸雷尼替丁)提供持续给药,而不会损害其生物利用度。肠溶包衣微丸漏释制剂定义为允许部分药物在胃液中从制剂中释放出来的肠溶包衣微丸。采用挤出滚圆法随后进行喷雾包衣,研究了制备肠溶包衣微丸漏释制剂的不同方法。使用常用的肠溶聚合物尤特奇L 30 D-55与包括乳糖、聚乙二醇8000和表面活性剂(司盘60(疏水性)或吐温80(亲水性))在内的可溶性化合物配制漏释肠溶衣。通过改变添加剂的用量或类型,可以调整制剂在模拟胃液中的药物释放速率。将溶出介质更换为pH 6的磷酸盐缓冲液后,所有研究的肠溶包衣微丸漏释制剂在30分钟内完全释放药物。利用计算机模拟预测了空腹条件下盐酸雷尼替丁模型药物从肠溶包衣微丸漏释制剂和速释制剂中的血药浓度-时间曲线。模拟结果与以下假设一致:肠溶包衣微丸漏释制剂能够为具有吸收窗的药物提供持续给药,而不会降低生物利用度。持续给药是制剂和胃肠道转运对微丸的综合作用的结果。本研究证明了关于胃肠道转运对药物制剂影响的知识的新应用。它还表明,肠溶包衣聚合物在常规肠溶包衣制剂以外的领域有新的应用。肠溶包衣微丸漏释制剂可能维持或提高具有吸收窗的药物的生物利用度这一假设仍有待进一步的体内研究证实。

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