首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Monodisperse hybrid microcapsules with an ultrathin shell of submicron thickness for rapid enzyme reactions
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Monodisperse hybrid microcapsules with an ultrathin shell of submicron thickness for rapid enzyme reactions

机译:具有亚微米厚度超薄外壳的单分散混合微胶囊,可快速进行酶反应

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In this study, we report a facile approach for the fabrication of monodisperse hybrid alginate/protamine/ silica (APSi) microcapsules with an ultrathin shell of submicron thickness as enzyme encapsulation systems for rapid enzymatic reactions. Monodisperse water-in-oil (W/O) emulsions, which have been generated in microfluidics, are used as templates for preparing APSi microcapsules via internal/external gelation and biosilicification. The microcapsules allow highly-efficient encapsulation of model actives bovine serum albumin (similar to 99%) during the fabrication process. The hybrid shell with an ultrathin thickness of similar to 420 nm provides fast mass transfer for the encapsulated model enzyme laccase to undergo rapid reaction. Moreover, this rigid hybrid shell also endows the encapsulated laccase with excellent reusability and storage stability. These ultrathin-shelled APSi microcapsules show great potential as efficient encapsulation systems for enzymes and biomolecules for their rapid reactions, and as delivery systems for actives in biomedical applications.
机译:在这项研究中,我们报告了一种具有亚微米厚度超薄壳的单分散混合藻酸盐/鱼精蛋白/二氧化硅(APSi)微胶囊制造方法,该方法可作为酶包封系统进行快速酶促反应。微流体中产生的单分散油包水(W / O)乳液用作通过内部/外部凝胶化和生物硅化制备APSi微胶囊的模板。微胶囊可在制造过程中高效封装模型活性物牛血清白蛋白(约占99%)。具有类似于420 nm的超薄厚度的杂化壳为包封的模型酶漆酶提供快速的质量转移,使其快速反应。而且,这种刚性的混合壳还赋予封装的漆酶以优异的可重复使用性和储存稳定性。这些超薄壳的APSi微胶囊具有巨大的潜力,可作为酶和生物分子的有效包封系统以实现快速反应,以及作为生物医学应用中活性物质的输送系统。

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