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采用热熔挤出技术的琥珀酸美托洛尔控释给药系统:释放调节剂对甲基丙烯酸共聚物的影响。

Extended release delivery system of metoprolol succinate using hot-melt extrusion: effect of release modifier on methacrylic acid copolymer.

机构信息

Department of Pharmaceutical Sciences and Technology, Institute of Chemical Technology, Nathelal Parekh Marg, Matunga (East), Mumbai, Maharashtra, 400019, India.

Faculty of Pharmaceutics Department, H.K. College of Pharmacy, Relief Road, Oshiwara, Jogeshwari West, Mumbai, Maharashtra, 400102, India.

出版信息

Drug Deliv Transl Res. 2018 Dec;8(6):1679-1693. doi: 10.1007/s13346-018-0545-1.

Abstract

The current study reports on the manufacturing of extended release dosage forms of metoprolol succinate via hot-melt extrusion (HME) technology. Either Eudragit®S100 and Eudragit®L100 alone or in combination with release modifying agent Polyox™ WSR 303 and Eudragit®L100-55 were processed to obtain complete and faster release. Metoprolol succinate with similar solubility parameters to polymer was dispersed in polymer matrix and was characterized by Fourier transform infrared spectroscopy (FT-IR), differential scanning calorimetry (DSC), X-ray diffraction (XRD), and scanning electron microscopy (SEM). Stability of drug after extrusion was confirmed by thermogravimetric analysis and high-performance liquid chromatography. Physical characterization method exhibited that the drug was homogeneously dispersed in non-crystalline state in Eudragit®L100-55-based formulations whereas in semi-crystalline state in Polyox™ WSR 303. The drug release percentage was below 3 and 40% in 0.1 N HCL with Eudragit®L100-55- and Polyox™ WSR 303-containing formulations, respectively, and exhibited pH-dependent dissolution properties. The drug-release mechanism was anomalous with Polyox™ WSR 303 formulations whereas diffusion through pore formation was obtained with Eudragit®L100-55. Both Eudragit®L100-55 and Polyox™ WSR 303 changed the release mechanism and kinetics of drug release from thermally processed dosage forms. The optimized stable formulation is similar to the marketed formulation with F2 value of 72.36. Thus, it can be concluded that HME was exploited as an effective process for the preparation of controlled release matrix system based on pH-dependent polymer matrices Eudragit®S100 and Eudragit®L100.

摘要

本研究报告了通过热熔挤出(HME)技术制造琥珀酸美托洛尔的缓释剂型。Eudragit®S100 和 Eudragit®L100 单独或与释放改性剂 Polyox™ WSR 303 和 Eudragit®L100-55 组合使用,以获得完全和更快的释放。将琥珀酸美托洛尔的溶解度参数与聚合物相似的药物分散在聚合物基质中,并通过傅里叶变换红外光谱(FT-IR)、差示扫描量热法(DSC)、X 射线衍射(XRD)和扫描电子显微镜(SEM)进行表征。挤出后药物的稳定性通过热重分析和高效液相色谱法得到证实。物理特性研究表明,药物在基于 Eudragit®L100-55 的制剂中以非晶态均匀分散,而在 Polyox™ WSR 303 中以半晶态分散。含有 Eudragit®L100-55 和 Polyox™ WSR 303 的制剂在 0.1 N HCL 中药物释放百分比分别低于 3%和 40%,并表现出 pH 依赖性溶解特性。药物释放机制在含有 Polyox™ WSR 303 的制剂中为异常扩散,而在含有 Eudragit®L100-55 的制剂中则通过孔形成扩散。Eudragit®L100-55 和 Polyox™ WSR 303 均改变了热加工制剂中药物释放的释放机制和动力学。优化的稳定制剂与市售制剂相似,F2 值为 72.36。因此,可以得出结论,热熔挤出技术被开发为一种有效的工艺,用于制备基于 pH 依赖性聚合物基质 Eudragit®S100 和 Eudragit®L100 的控释基质系统。

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