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具有增强粘膜粘附特性的聚乙烯吡咯烷酮/羟丙基甲基纤维素可混溶共混物在可预测的脉冲式时间治疗中用于调节药物释放的应用。

Application of PVP/HPMC miscible blends with enhanced mucoadhesive properties for adjusting drug release in predictable pulsatile chronotherapeutics.

作者信息

Karavas Evangelos, Georgarakis Emmanouel, Bikiaris Dimitrios

机构信息

Pharmathen S.A., Pharmaceutical Industry, Pallini Attikis, Attiki, Greece.

出版信息

Eur J Pharm Biopharm. 2006 Aug;64(1):115-26. doi: 10.1016/j.ejpb.2005.12.013. Epub 2006 May 3.

Abstract

The aim of the present study was to prepare pulsatile release formulations consisting of two-layered tablets appropriate for preventing ischemic heart diseases. For this reason the active core was constituted by a FELO/PVP 10/90 w/w solid dispersion while for the adjustment of the drug release time the coating layer was composed of PVP/HPMC blends at different compositions, acting as a stimulus responsible layer. These blends as was found by DSC studies are miscible in the entire composition range, ensured by the interactions taking place between hydroxyl groups of HPMC and carbonyl groups of PVP. The miscibility of the system enhances the mucoadhesive properties of the blends, compared with those of pure HPMC, which is desired for such applications. The enhancement was attributed to the higher rate of wetting and flexibility of the new matrices due to the faster dissolution of the PVP macromolecules. Upon exposure of the prepared tablets to the release medium it was found that the coating layer disintegrates first, followed by the immediate release of FELO from the active core. The delaying time is based on a complicated mechanism, which is a combination of swelling and erosion of the PVP/HPMC polymer blends. Varying the PVP/HPMC blend ratios, the exact time that FELO is released during a daytime can be effectively adjusted and this ability is expressed mathematically by the equation t = 0.028 C1.5, where C is the concentration of HPMC in the blend.

摘要

本研究的目的是制备由双层片剂组成的脉冲释放制剂,以预防缺血性心脏病。因此,活性核心由FELO/PVP 10/90 w/w固体分散体构成,而对于药物释放时间的调节,包衣层由不同组成的PVP/HPMC共混物组成,作为刺激响应层。通过DSC研究发现,这些共混物在整个组成范围内是可混溶的,这是由HPMC的羟基与PVP的羰基之间发生的相互作用所保证的。与纯HPMC相比,该体系的可混溶性增强了共混物的粘膜粘附性能,这对于此类应用是理想的。这种增强归因于由于PVP大分子的更快溶解,新基质具有更高的润湿速率和柔韧性。将制备的片剂置于释放介质中后发现,包衣层首先崩解,随后FELO从活性核心立即释放。延迟时间基于一种复杂的机制,该机制是PVP/HPMC聚合物共混物溶胀和侵蚀的组合。通过改变PVP/HPMC共混比,可以有效地调节FELO在白天释放的准确时间,并且这种能力可以用方程t = 0.028 C1.5数学表示,其中C是共混物中HPMC的浓度。

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