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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Generation of nano-sized core-shell particles using a coaxial tri-capillary electrospray-template removal method
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Generation of nano-sized core-shell particles using a coaxial tri-capillary electrospray-template removal method

机译:使用同轴三毛细管电喷雾模板去除方法生成纳米级核-壳颗粒

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This study proposed a new strategy based on a coaxial tri-capillary electrospray-template removal process for producing nanosized polylactide-b-polyethylene glycol (PLA-PEG) particles with a core-shell structure. Microparticles with core-shell-corona structures were first fabricated by coaxial tri-capillary electrospray, and core-shell nanoparticles less than 200 nm in size were subsequently obtained by removing the PEG template from the core-shell-corona microparticles. The nanoparticle size could be modulated by adjusting the flow rate of corona fluid, and nanoparticles with an average diameter of 106 ± 5 nm were obtained. The nanoparticles displayed excellent dispersion stability in aqueous media and very low cytotoxicity. Paclitaxel was used as a model drug to be incorporated into the core section of the nanoparticles. A drug loading content in the nanoparticles as high as 50.7 ± 1.5 wt% with an encapsulation efficiency of greater than 70% could be achieved by simply increasing the feed rate of the drug solution. Paclitaxel exhibited sustained release from the nanoparticles for more than 40 days. The location of the paclitaxel in the nanoparticles, i.e., in the core or shell layer, did not have a significant effect on its release.
机译:这项研究提出了一种基于同轴三毛细管电喷雾模板去除工艺的新策略,用于生产具有核-壳结构的纳米级聚乳酸-b-聚乙二醇(PLA-PEG)颗粒。首先通过同轴三毛细管电喷雾制备具有核-壳-电晕结构的微粒,然后通过从核-壳-电晕微粒中除去PEG模板,获得尺寸小于200 nm的核-壳纳米颗粒。可以通过调节电晕液的流速来调节纳米颗粒的大小,从而获得平均直径为106±5 nm的纳米颗粒。纳米颗粒在水性介质中显示出优异的分散稳定性,并且细胞毒性非常低。紫杉醇被用作模型药物并入纳米颗粒的核心部分。通过简单地增加药物溶液的进料速度,可以实现纳米颗粒中载药量高达50.7±1.5 wt%,包封率大于70%。紫杉醇从纳米颗粒中持续释放超过40天。紫杉醇在纳米颗粒中,即在核或壳层中的位置对其释放没有显着影响。

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