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具有藻酸盐包被大孔的聚乳酸-羟基乙酸共聚物微球用于制备盐酸多奈哌齐可注射长效制剂

PLGA Microspheres with Alginate-Coated Large Pores for the Formulation of an Injectable Depot of Donepezil Hydrochloride.

作者信息

Kim Dohyun, Han Tae Hee, Hong Seong-Chul, Park Sun Jae, Lee Yong Hak, Kim Hyeongmin, Park Minwoo, Lee Jaehwi

机构信息

College of Pharmacy, Chung-Ang University, Seoul 06974, Korea.

出版信息

Pharmaceutics. 2020 Apr 1;12(4):311. doi: 10.3390/pharmaceutics12040311.

Abstract

As the main symptom of Alzheimer's disease-related dementia is memory loss, patient compliance for donepezil hydrochloride (donepezil), administered as once-daily oral formulations, is poor. Thus, we aimed to design poly(lactic--glycolic acid) (PLGA) microspheres (MS) with alginate-coated large pores as an injectable depot of donepezil exhibiting sustained release over 2-3 weeks. The PLGA MS with large pores could provide large space for loading drugs with high loading capacity, and thereby sufficient amounts of drugs were considered to be delivered with minimal use of PLGA MS being injected. However, initial burst release of donepezil from the porous PLGA MS was observed. To reduce this initial burst release, the surface pores were closed with calcium alginate coating using a spray-ionotropic gelation method. The final pore-closed PLGA MS showed in vitro sustained release for approximately 3 weeks, and the initial burst release was remarkably decreased by the calcium alginate coating. In the prediction of plasma drug concentration profiles using convolution method, the mean residence time of the pore-closed PLGA MS was 2.7-fold longer than that of the porous PLGA MS. Therefore, our results reveal that our pore-closed PLGA MS formulation is a promising candidate for the treatment of dementia with high patient compliance.

摘要

由于阿尔茨海默病相关痴呆的主要症状是记忆丧失,患者对盐酸多奈哌齐(多奈哌齐)每日一次口服制剂的依从性较差。因此,我们旨在设计具有藻酸盐包被大孔的聚乳酸-乙醇酸共聚物(PLGA)微球(MS),作为一种可注射的多奈哌齐长效制剂,能在2至3周内持续释放。具有大孔的PLGA微球可为高载药量提供大的空间,从而在注射最少数量的PLGA微球时就能递送足够量的药物。然而,观察到多奈哌齐从多孔PLGA微球中有初始突释现象。为减少这种初始突释,采用喷雾离子凝胶法用海藻酸钙包被封闭表面孔。最终封闭孔的PLGA微球在体外显示出约3周的持续释放,并且海藻酸钙包被显著降低了初始突释。在使用卷积法预测血浆药物浓度曲线时,封闭孔的PLGA微球的平均驻留时间比多孔PLGA微球长2.7倍。因此,我们的结果表明,我们的封闭孔PLGA微球制剂是一种具有高患者依从性的痴呆治疗的有前景的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb40/7238133/73a46a154e69/pharmaceutics-12-00311-g001.jpg

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