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纳米颗粒成孔剂作为多功能包衣辅料用于口服给药的弱碱性药物pH转变无关型控释的设计与优化

Design and Optimization of a Nanoparticulate Pore Former as a Multifunctional Coating Excipient for pH Transition-Independent Controlled Release of Weakly Basic Drugs for Oral Drug Delivery.

作者信息

Chang Hao Han R, Chen Kuan, Lugtu-Pe Jamie Anne, Al-Mousawi Nour, Zhang Xuning, Bar-Shalom Daniel, Kane Anil, Wu Xiao Yu

机构信息

Advanced Pharmaceutics and Drug Delivery Laboratory, Leslie Dan Faculty of Pharmacy, University of Toronto, Toronto, ON M5S 3M2, Canada.

Department of Pharmacy, University of Copenhagen, 2100 Copenhagen Ø, Denmark.

出版信息

Pharmaceutics. 2023 Feb 7;15(2):547. doi: 10.3390/pharmaceutics15020547.

Abstract

Bioavailability of weakly basic drugs may be disrupted by dramatic pH changes or unexpected pH alterations in the gastrointestinal tract. Conventional organic acids or enteric coating polymers cannot address this problem adequately because they leach out or dissolve prematurely, especially during controlled release applications. Thus, a non-leachable, multifunctional terpolymer nanoparticle (TPN) made of cross-linked poly(methacrylic acid) (PMAA)-polysorbate 80-grafted-starch (PMAA-PS 80-g-St) was proposed to provide pH transition-independent release of a weakly basic drug, verapamil HCl (VER), by a rationally designed bilayer-coated controlled release bead formulation. The pH-responsive PMAA and cross-linker content in the TPN was first optimized to achieve the largest possible increase in medium uptake alongside the smallest decrease in drug release rate at pH 6.8, relative to pH 1.2. Such TPNs maintained an acidic microenvironmental pH (pH) when loaded in ethylcellulose (EC) films, as measured using pH-indicating dyes. Further studies of formulations revealed that with the 1:2 VER:TPN ratio and 19% coating weight gain, bilayer-coated beads maintained a constant release rate over the pH transition and exhibited extended release up to 18 h. These results demonstrated that the multifunctional TPN as a pH modifier and pH-dependent pore former could overcome the severe pH-dependent solubility of weakly basic drugs.

摘要

弱碱性药物的生物利用度可能会因胃肠道中显著的pH值变化或意外的pH值改变而受到干扰。传统的有机酸或肠溶包衣聚合物无法充分解决这个问题,因为它们会过早渗出或溶解,特别是在控释应用中。因此,有人提出了一种由交联聚甲基丙烯酸(PMAA)-聚山梨醇酯80接枝淀粉(PMAA-PS 80-g-St)制成的不可浸出的多功能三元共聚物纳米颗粒(TPN),通过合理设计的双层包衣控释珠制剂来实现弱碱性药物盐酸维拉帕米(VER)的pH转变无关释放。首先优化TPN中pH响应性PMAA和交联剂的含量,以在pH 6.8时相对于pH 1.2实现最大可能的介质摄取增加以及最小的药物释放速率降低。使用pH指示染料测量时,这种TPN负载在乙基纤维素(EC)薄膜中时能维持酸性微环境pH值。对制剂的进一步研究表明,在VER与TPN的比例为1:2且包衣增重为19%时,双层包衣珠在pH转变过程中保持恒定的释放速率,并显示出长达18小时的缓释效果。这些结果表明,多功能TPN作为pH调节剂和pH依赖性成孔剂可以克服弱碱性药物严重的pH依赖性溶解度问题。

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