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研究低用量功能添加剂控制热熔挤出固体分散体中难溶性药物释放的应用。

An investigation into the use of low quantities of functional additives to control drug release from hot melt extruded solid dispersions for poorly soluble drug delivery.

机构信息

School of Pharmacy, University of East Anglia, Norwich, NR4 7TJ, UK; College of Pharmacy, Umm Al-Qura University, Makkah, Saudi Arabia.

School of Chemistry, University of East Anglia, Norwich, NR4 7TJ, UK.

出版信息

Int J Pharm. 2020 Apr 15;579:119172. doi: 10.1016/j.ijpharm.2020.119172. Epub 2020 Feb 22.

DOI:10.1016/j.ijpharm.2020.119172
PMID:32097683
Abstract

The motivation of this study is to demonstrate the practicality of producing slow release and fast release products in a single-step hot melt extrusion (HME) process. HPMCAS as the carrier material showed good potential in monolithic controlled release formulations for the model drug, carbamazepine (CBZ). As binary formulations, CBZ-HPMCAS extrudates showed zero-order release over 24 h which was accompanied by the swelling of the extrudates. A range of functional excipients was used at low quantities to modulate the release rate. The release rates of the HME extrudates could be either accelerated by the incorporations of low quantities (5% w/w) of soluble additives or further sustained by adding lipid excipient, Gelucire 50/13. Clear phase separations of the soluble additives including crosscarmellose sodium, sodium starch glycolate, maltodextrin and lactose in the extrudates led to higher interior porosity and quicker erosion in comparison to the binary extrudates. The phase separated Gelucire in the extrudates led to the substantial swelling of the extrudates and resulted in further prolonged drug release. This study provided clear formulation strategies for modulating the drug release rate from controlled release formulation prepared directly by single-step HME. In addition, this research work also evaluates for the first time HME extrudates simultaneous swelling and drug release using this UV imaging technique. The whole dose cell of this instrumentation is utilised to provide insights into the dissolution process of solid dispersions prepared by HME.

摘要

本研究的目的是展示在单步热熔挤出(HME)过程中生产缓控释和速释产品的实用性。HPMCAS 作为载体材料,在模型药物卡马西平(CBZ)的整体控释制剂中具有良好的应用潜力。作为二元制剂,CBZ-HPMCAS 挤出物在 24 小时内呈现零级释放,同时挤出物发生溶胀。使用了一系列功能辅料以低用量来调节释放速率。通过添加低用量(5%w/w)的可溶性添加剂,可以加速 HME 挤出物的释放速率,或者通过添加脂质辅料 Gelucire 50/13 进一步延长释放时间。与二元挤出物相比,挤出物中可溶性添加剂(包括交联羧甲纤维素钠、交联聚维酮、麦芽糊精和乳糖)的明显相分离导致了更高的内部孔隙率和更快的侵蚀,从而导致更快的释放速率。挤出物中相分离的 Gelucire 导致挤出物的大幅溶胀,并进一步延长了药物的释放时间。本研究为通过单步 HME 直接制备的控释制剂调节药物释放速率提供了明确的配方策略。此外,本研究工作还首次使用该 UV 成像技术评估了 HME 挤出物的同时溶胀和药物释放。该仪器的整个剂量池用于深入了解通过 HME 制备的固体分散体的溶解过程。

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