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首页> 外文期刊>International Journal of Pharmaceutics >Alginate microparticles prepared by spray-coagulation method: preparation, drug loading and release characterization.
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Alginate microparticles prepared by spray-coagulation method: preparation, drug loading and release characterization.

机译:通过喷雾凝固法制备的藻酸盐微粒:制备,载药量和释放特性。

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A spray-coagulation method was developed for the preparation of large scale of porous alginate microparticles. The effect of three variables on porosity was evaluated: (1) alginate solution concentration (2) the concentration of CaCl2 in the coagulation medium and (3) the ratio of guluronic acid to manuronic acid of the alginate. Methylene blue (MB), a highly water-soluble compound and a practically water-insoluble compound, 4-phenylazoaniline (PAA) were used as the model drugs to study drug loading and release characteristics from alginate microparticles. The release of the model compounds from the microparticles was found to depend upon the release medium. Incomplete in vitro release of both model drugs in deionized (DI) water was observed. The release of MB in simulated gastrointestinal fluid (0.1N HCl) was fast and complete, while the release of PAA was slow in 0.1N HCl and fast in phosphate buffer solution (pH 6.8). Interactions between the model drugs and alginate microparticles were identified from scanning electron microscopy (SEM), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FT-IR) analysis. The results indicated that (1) porous alginate microparticles can be produced by the spray-coagulation method; (2) drugs can be loaded by the adsorption method; (3) and the obtained microparticles may be used for delaying the release of drugs of low water solubility in acidic conditions.
机译:开发了一种喷雾凝结法,用于制备大规模的多孔藻酸盐微粒。评估了三个变量对孔隙率的影响:(1)海藻酸盐溶液的浓度(2)混凝介质中CaCl2的浓度,以及(3)海藻酸盐中古洛糖醛酸与甘露酸的比率。亚甲基蓝(MB),高水溶性化合物和几乎不溶于水的化合物4-苯基偶氮苯胺(PAA)被用作模型药物,以研究藻酸盐微粒的载药量和释放特性。发现模型化合物从微粒的释放取决于释放介质。观察到两种模型药物在去离子(DI)水中的体外释放不完全。 MB在模拟胃肠道液(0.1N HCl)中的释放快速而完全,而PAA在0.1N HCl中的释放缓慢,而在磷酸盐缓冲液(pH 6.8)中则快速释放。通过扫描电子显微镜(SEM),差示扫描量热法(DSC),傅里叶变换红外光谱(FT-IR)分析确定了模型药物与藻酸盐微粒之间的相互作用。结果表明:(1)可通过喷雾混凝法制备多孔藻酸盐微粒。 (2)可以通过吸附法加载药物; (3),所得的微粒可用于在酸性条件下延迟水溶性低的药物的释放。

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