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溶液和固态中扎来普隆与环糊精和亲水性聚合物的络合的比较分析。

Comparative analysis of zaleplon complexation with cyclodextrins and hydrophilic polymers in solution and in solid state.

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy and Biochemistry, University of Zagreb, Zagreb, Croatia.

出版信息

J Pharm Biomed Anal. 2012 Dec;71:35-44. doi: 10.1016/j.jpba.2012.07.027. Epub 2012 Jul 31.

Abstract

The aim of this work was to investigate the potential synergistic effect of water-soluble polymers (hypromellose, HPMC and polyvinylpyrrolidone, PVP) on zaleplon (ZAL) complexation with parent β-cyclodextrin (βCD) and its randomly methylated derivative (RAMEB) in solution and in solid state. The addition of HPMC to the complexation medium improved ZAL complexation and solubilization with RAMEB (K(ZAL/RAMEB)=156±5M(-1) and K(ZAL/RAMEB/HPMC)=189±8M(-1); p<0.01), while such effect was not observed for βCD (K(ZAL/βCD)=112±2M(-1) and K(ZAL/βCD/HPMC)=119±8M(-1); p>0.05). Although PVP increased the ZAL aqueous solubility from 0.22 to 0.27mg/mL, it did not show any synergistic effects on ZAL solubilization with the cyclodextrins tested. Binary and ternary systems of ZAL with βCD, RAMEB and HPMC were prepared by spray-drying. Differential scanning calorimetry, X-ray powder diffraction and scanning electron microscopy demonstrated a partial ZAL amorphization in spray-dried binary and ternary systems with βCD, while the drug was completely amorphous in all samples with RAMEB. Furthermore, inclusion complex formation in all systems prepared was confirmed by solid-state NMR spectroscopy. The in vitro dissolution rate followed the rank order ZAL/RAMEB/HPMC>ZAL/RAMEB=ZAL/βCD/HPMC>ZAL/βCD≫ZAL, clearly demonstrating the superior performance of RAMEB on ZAL complexation in the solid state and its synergistic effect with HPMC on drug solubility. Surprisingly, when loaded into tablets made with insoluble microcrystalline cellulose, RAMEB complexes had no positive effect on drug dissolution, because HPMC and RAMEB acted as a binders inside the tablets, prolonging their disintegration. Oppositely, the formulation with mannitol, a soluble excipient, containing a ternary RAMEB system, released the complete drug-dose in only 5min, clearly demonstrating its suitability for the development of immediate-release oral formulation of ZAL.

摘要

本工作旨在研究水溶性聚合物(羟丙甲纤维素、HPMC 和聚乙烯吡咯烷酮、PVP)与母体β-环糊精(βCD)及其随机甲基化衍生物(RAMEB)在溶液中和固态中对扎来普隆(ZAL)络合的潜在协同效应。在络合介质中添加 HPMC 可改善 ZAL 与 RAMEB 的络合和增溶作用(K(ZAL/RAMEB)=156±5M(-1)和 K(ZAL/RAMEB/HPMC)=189±8M(-1);p<0.01),而对βCD 则未观察到这种作用(K(ZAL/βCD)=112±2M(-1)和 K(ZAL/βCD/HPMC)=119±8M(-1);p>0.05)。虽然 PVP 将 ZAL 的水溶解度从 0.22mg/mL 提高到 0.27mg/mL,但它对 ZAL 与所测试的环糊精的增溶作用没有表现出任何协同效应。通过喷雾干燥制备了 ZAL 与βCD、RAMEB 和 HPMC 的二元和三元体系。差示扫描量热法、X 射线粉末衍射和扫描电子显微镜表明,在含有βCD 的喷雾干燥二元和三元体系中,部分 ZAL 无定形化,而在所有含有 RAMEB 的样品中,药物均完全无定形。此外,固态 NMR 光谱证实了所有制备的系统中均存在包合物形成。体外溶出速率遵循以下顺序:ZAL/RAMEB/HPMC>ZAL/RAMEB=ZAL/βCD/HPMC>ZAL/βCD≫ZAL,这清楚地表明 RAMEB 在固态中对 ZAL 络合的优越性能及其与 HPMC 对药物溶解度的协同作用。令人惊讶的是,当将 RAMEB 复合物装入不溶性微晶纤维素制成的片剂中时,其对药物溶解没有积极影响,因为 HPMC 和 RAMEB 在片剂内部充当粘合剂,延长了其崩解时间。相反,含有 RAMEB 三元体系的可溶性赋形剂甘露醇的配方仅在 5 分钟内释放出完整的药物剂量,这清楚地表明其适合开发 ZAL 的即时释放口服制剂。

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