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基于海藻酸钠/壳寡糖/聚(Eudragit(®)L100-55)“三明治”聚电解质复合物的口服给药 pH 敏感型微粒。

pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit(®) L100-55 "sandwich" polyelectrolyte complex.

机构信息

Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.

出版信息

Colloids Surf B Biointerfaces. 2013 Oct 1;110:395-402. doi: 10.1016/j.colsurfb.2013.05.016. Epub 2013 May 17.

Abstract

The primary objective of this study was to investigate the influence of the oligochitosan-Eudragit(®) L100-55 polyelectrolyte complex (OCH-EL PEC) on the pH-sensitivity of Eudragit(®) L100-55-treated alginate-oligochitosan microparticles. In order to achieve this, three types of naproxen-loaded microparticles were prepared under mild and environmentally friendly conditions using a custom made device with coaxial air flow: Ca-alginate (Ca-ALG), alginate-oligochitosan (ALG-OCH) and alginate-oligochitosan-Eudragit(®) L100-55 (ALG-OCH-EL) microparticles. After drying, the microparticles were subjected to microscopic analysis, and physicochemical and biopharmaceutical characterization. The non-covalent interaction between OCH and EL and the formation of OCH-EL PEC during the preparation procedure of the particles were verified by thermal and FT-IR analysis. The obtained particles exhibited acceptable sphericity and surface roughness due to the presence of the drug crystals (Ca-ALG particles) and OCH-EL PEC (ALG-OCH-EL particles). It was found that reinforcement of the ALG-OCH particles with OCH-EL PEC had no significant effect on the relatively high encapsulation efficiencies (>74.4%). The results of drug release studies confirmed the ability of ALG-OCH PEC to sustain drug release at pH 6.8 and 7.4. However, this PEC showed enhanced sensitivity to an acidic environment and to simulated intestinal fluid (pH 6.8) after prior exposure to an acidic medium. Additional treatment of ALG-OCH particles with EL and formation of "sandwich" ALG-OCH-EL PEC was essential not only to improve stability and decrease drug release in acidic medium, but also to achieve sustained release after the pH of dissolution medium was raised to 6.8. The obtained results suggested that ALG-OCH-EL microparticles have promising potential as pH-sensitive multiparticulate drug carriers for oral delivery of NSAIDs.

摘要

本研究的主要目的是研究低相对分子质量壳聚糖-聚(Eudragit(®)L100-55)聚电解质复合物(OCH-EL PEC)对 Eudragit(®)L100-55 处理的藻酸盐-低相对分子质量壳聚糖微球 pH 敏感性的影响。为了实现这一目标,使用带有同轴气流的定制设备,在温和且环保的条件下制备了三种载萘普生的微球:海藻酸钠(Ca-ALG)、藻酸盐-低相对分子质量壳聚糖(ALG-OCH)和藻酸盐-低相对分子质量壳聚糖-聚(Eudragit(®)L100-55)(ALG-OCH-EL)微球。干燥后,对微球进行微观分析和理化及生物药剂学特性研究。通过热分析和傅里叶变换红外光谱(FT-IR)分析证实了 OCH 和 EL 之间的非共价相互作用以及颗粒制备过程中 OCH-EL PEC 的形成。由于药物晶体(Ca-ALG 颗粒)和 OCH-EL PEC(ALG-OCH-EL 颗粒)的存在,得到的颗粒具有可接受的球形度和表面粗糙度。结果表明,在 ALG-OCH 颗粒中加入 OCH-EL PEC 对相对较高的包封效率(>74.4%)没有显著影响。药物释放研究结果证实了 ALG-OCH PEC 在 pH6.8 和 7.4 下能够持续释放药物的能力。然而,这种 PEC 在暴露于酸性介质后,对酸性环境和模拟肠液(pH6.8)显示出增强的敏感性。此外,用 EL 对 ALG-OCH 颗粒进行处理并形成“三明治”ALG-OCH-EL PEC,不仅对提高在酸性介质中的稳定性和减少药物释放至关重要,而且对提高溶解介质的 pH 值至 6.8 后实现持续释放也至关重要。研究结果表明,ALG-OCH-EL 微球具有作为口服给予 NSAIDs 的 pH 敏感多颗粒药物载体的潜在应用前景。

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