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壳寡糖作为一种有前景的交联剂用于载萘普生的 Ca-海藻酸微球,以提高其对 pH 的敏感性。

Chitosan oligosaccharide as prospective cross-linking agent for naproxen-loaded Ca-alginate microparticles with improved pH sensitivity.

机构信息

Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, Belgrade, Serbia.

出版信息

Drug Dev Ind Pharm. 2013 Jan;39(1):77-88. doi: 10.3109/03639045.2012.658813. Epub 2012 Feb 18.

Abstract

OBJECTIVES

The aim of the presented work was to develop Ca-alginate microparticles for oral administration of naproxen reinforced with chitosan oligosaccharide (COS) with a special interest to examine the potential of COS for improvement of microparticles stability in simulated intestinal fluid (SIF).

METHOD

Microparticles were prepared according to the two-step procedure using an air-jet device with varying calcium chloride and COS concentration in the gelling medium. All prepared microparticles were subjected to size determination, morphology, surface, and inner structure analysis by scanning electron microscopy (SEM), drug loading (DL) and encapsulation efficiency (EE), differential scanning calorimetry (DSC), Fourier transform infrared (FT-IR) spectroscopy, in vitro swelling, and drug release studies.

RESULTS

In general, COS-treated microparticles were spherical in shape but somewhat deformed, exhibiting the surface roughness with the mean particle size less than 350 µm. FT-IR and DSC studies confirmed the formation of polyelectrolyte complex (PEC) between alginate and COS, whereas chemical properties and crystalline state of naproxen were unaffected by the encapsulation process. Low naproxen solubility in the gelling medium and rapid entrapment resulted in high encapsulation efficiency (>80.0%). The results of swelling studies demonstrated that COS-treated particles were less sensitive to swelling and erosion in SIF in comparison to the nontreated particles. This resulted in prolonged drug release in SIF, which was dependent on the COS/alginate ratio.

CONCLUSION

The obtained findings proved that COS could be used as an effective cross-linking agent for improvement of Ca-alginate microparticles stability in SIF, allowing prolonged release of the encapsulated drug after oral administration.

摘要

目的

本研究旨在开发一种用于口服萘普生的海藻酸钙微球,并用壳寡糖(COS)进行强化,特别关注 COS 改善模拟肠液(SIF)中微球稳定性的潜力。

方法

采用两步法,使用空气喷射装置,在凝胶介质中改变氯化钙和 COS 的浓度,制备微球。所有制备的微球均通过扫描电子显微镜(SEM)进行粒径测定、形态、表面和内部结构分析,药物载量(DL)和包封效率(EE),差示扫描量热法(DSC),傅里叶变换红外(FT-IR)光谱分析,体外溶胀和药物释放研究。

结果

一般来说,COS 处理的微球呈球形,但有些变形,表现出表面粗糙度,平均粒径小于 350μm。FT-IR 和 DSC 研究证实了海藻酸钠和 COS 之间形成了聚电解质复合物(PEC),而萘普生的化学性质和结晶状态不受包封过程的影响。由于萘普生在凝胶介质中的溶解度低且包封速度快,因此包封效率>80.0%。溶胀研究结果表明,与未处理的颗粒相比,COS 处理的颗粒在 SIF 中对溶胀和侵蚀的敏感性较低。这导致在 SIF 中药物释放时间延长,这取决于 COS/海藻酸钠的比例。

结论

研究结果证明,COS 可用作改善 Ca-海藻酸钙微球在 SIF 中稳定性的有效交联剂,允许口服后延长包封药物的释放时间。

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