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Research of Amoxicillin Microcapsules Preparation Playing Micro-Jetting Technology

机译:微射流技术制备阿莫西林微胶囊的研究

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摘要

With polylactic-co-glycolic acid(PLGA) as shell material of microcapsule, amoxicillin as the model, poly(vinyl alcohol) and twain as surfactant, amoxicillin-PLGA microcapsules were manufactured using digital micro-jetting technology and a glass nozzle of 40μm diameter. The influences of the parameters of micro-jetting system on the mean grain size and size distribution of amoxicillin-PLGA microcapsules were studied with single factor analysis and orthogonal experiment method, namely, PLGA solution concentration, driving voltage, jetting frequency, stirrer speed, etc. The optimal result was obtained; the form representation of microcapsule was analyzed as well. The results show that, under certain conditions of experimental drug prescription, driving voltage was proportional to the particle size; jetting frequency and stirrer speed were inversely proportional. When the PLGA concentration for 3%, driving voltage for 80V, the jetting frequency for 10000Hz and the stirrer speed for 750rpm, the particles were in an ideal state with the mean grain size of 60.246μm, the encapsulation efficiency reached 62.39% and 2.1% for drug loading.
机译:以聚乳酸-乙醇酸(PLGA)为微胶囊壳材料,以阿莫西林为模型,以聚乙烯醇和吐温为表面活性剂,采用数字微喷技术和直径为40μm的玻璃喷嘴制备了阿莫西林-PLGA微胶囊。 。采用单因素分析和正交试验方法研究了微喷系统参数对阿莫西林-PLGA微胶囊平均粒径和粒径分布的影响,即PLGA溶液浓度,驱动电压,喷射频率,搅拌速度等。获得了最佳结果;还对微胶囊的形式表示进行了分析。结果表明,在一定的实验药物处方条件下,驱动电压与颗粒大小成正比。喷射频率与搅拌器速度成反比。当PLGA浓度为3%,驱动电压为80V,喷射频率为10000Hz,搅拌速度为750rpm时,颗粒处于理想状态,平均粒径为60.246μm,包封率分别达到62.39%和2.1%。用于药物装载。

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