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Microencapsulation of curcumin in PLGA microcapsules by coaxial flow focusing

机译:姜黄素通过同轴流聚焦微囊封装在PLGA微胶囊中

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Curcumin-loaded PLGA microcapsules are fabricated by a liquid-driving coaxial flow focusing device. In the process, a stable coaxial cone-jet configuration is formed under the action of a coflowing liquid stream and the coaxial liquid jet eventually breaks up into microcapsules because of flow instability. This process can be well controlled by adjusting the flow rates of three phases including the driving PVA water solution, the outer PLGA ethyl acetate solution and the inner curcumin propylene glycol solution. Confocal and SEM imaging methods clearly indicate the core-shell structure of the resultant microcapsules. The encapsulation rate of curcumin in PLGA is measured to be more than 70%, which is much higher than the tranditional methods such as emulsion. The size distribution of resultant microcapsules under different conditions is presented and compared. An in vitro release simulation platform is further developed to verify the feasibility and reliability of the method.
机译:载有姜黄素的PLGA微胶囊是通过液体驱动同轴流动聚焦装置制造的。在此过程中,在同向流动的液体流的作用下形成了稳定的同轴锥形喷射结构,并且由于流动不稳定性,同轴液体喷射最终分裂成微囊。通过调节三相相的流速,包括驱动PVA水溶液,外部PLGA乙酸乙酯溶液和内部姜黄素丙二醇溶液,可以很好地控制此过程。共聚焦和SEM成像方法清楚地表明了所得微胶囊的核-壳结构。姜黄素在PLGA中的包封率经测量超过70%,这比传统方法(如乳液法)要高得多。呈现并比较了不同条件下所得微胶囊的大小分布。进一步开发了体外释放模拟平台,以验证该方法的可行性和可靠性。

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