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低分子量肝素口服制剂丸粒。

Pellets for oral administration of low-molecular-weight heparin.

机构信息

Department of Pharmaceutical Technology and Biopharmacy, Faculty of Pharmacy, University Henri Poincaré, Nancy, France.

出版信息

Drug Dev Ind Pharm. 2009 Dec;35(12):1503-10. doi: 10.3109/03639040903037207.

Abstract

BACKGROUND

Oral absorption of low-molecular-weight heparin (LMWH) is limited by its molecular size and negative charge. It has been shown previously that orally administered polymeric nano- or microparticles containing encapsulated LMWH have led to gastrointestinal absorption of heparin in rabbits.

METHOD

Based on these investigations, pellets containing two LMWHs, enoxaparin (MW 4500 Da) or bemiparin (MW 3600 Da), and EudragitRS30D (ERS), were prepared using extrusion/ spheronization technique. Uncoated or coated (ERS) pellets were evaluated in vitro and in vivo on rabbits.

RESULTS

Enoxaparin pellets showed fast in vitro release in phosphate buffer (pH 7.4) and prolonged in vivo drug absorption after a single oral dose of 600 anti-Xa IU/ kg of body weight, leading to relative bioavailabilities ranging from 9.7 +/- 1.9% to 12.8 +/- 2.7% and anti-Xa activity over the curative dose. Bemiparin included in matrix pellets of ERS and coated with ERS exhibited in vitro prolonged release up to 4 hours and in vivo anti-Xa activity below the therapeutic minimum value of 0.1 IU/mL.

CONCLUSION

This study presents LMWH in a pellet dosage form, which compared to nano- or microparticles, may offer a more convenient and industrializable way of manufacture leading to an easier scale-up process.

摘要

背景

低分子量肝素(LMWH)的口服吸收受到其分子大小和电荷的限制。先前已经证明,口服给予含有包裹的 LMWH 的聚合纳米或微米粒子导致肝素在兔子的胃肠道吸收。

方法

基于这些研究,使用挤出/球形化技术制备了含有两种 LMWH,依诺肝素(MW 4500 Da)或贝米肝素(MW 3600 Da)和 EudragitRS30D(ERS)的丸剂。未包衣或包衣(ERS)的丸剂在兔子体内和体外进行了评估。

结果

依诺肝素丸剂在磷酸盐缓冲液(pH 7.4)中表现出快速的体外释放,并且在单次口服 600 抗-Xa IU/kg 体重的剂量后,延长了体内药物吸收,导致相对生物利用度范围为 9.7 +/- 1.9%至 12.8 +/- 2.7%,并且抗-Xa 活性超过治疗剂量。包含在 ERS 基质丸剂中的贝米肝素,并以 ERS 包衣,表现出体外延长至 4 小时的释放和体内抗-Xa 活性低于治疗最低值 0.1 IU/mL。

结论

本研究提出了 LMWH 的丸剂剂型,与纳米或微米粒子相比,它可能提供了一种更方便和可工业化的制造方式,从而更容易实现规模化生产。

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