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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Formulation of robust organic-inorganic hybrid magnetic microcapsules through hard-template mediated method for efficient enzyme immobilization
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Formulation of robust organic-inorganic hybrid magnetic microcapsules through hard-template mediated method for efficient enzyme immobilization

机译:通过硬模板介导的有效酶固定方法制备健壮的有机-无机杂化磁微胶囊

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摘要

A mild and facile method for the construction of robust organic-inorganic hybrid magnetic microcapsules was developed by a hard-template mediated method combined with polydopamine (PDA) and Fe3O4 nanoparticles onto a CaCO3 microparticle template. More specifically, negatively charged Fe3O4 nanoparticles were adsorbed on the surface or into the lumen of porous CaCO3 microparticles through electrostatic interaction and physical absorption. Then, the magnetic sacrificial templates were coated with PDA through the self-polymerization of dopamine to obtain the magnetic PDA-CaCO3 microparticles, which was followed by template removal using EDTA to construct organic-inorganic hybrid magnetic microcapsules. Characterization confirmed that the microcapsules possess a robust hollow structure such that the enzyme inside exists in a free state. The Fe3O4 nanoparticles acted as critical factors in the microcapsules for both recyclable component and tough scaffolds to sustain the microcapsules away from collapsing and folding. Combing the merits of the organic layer and the inorganic component, the microcapsules were applied for the encapsulation of Candida Rugosa Lipase (CRL). The encapsulated CRL was demonstrated to have several advantages, including increased encapsulation efficiency, enzyme activity and long-term storage stability. Hopefully, the as-prepared microbioreactor may provide a facile and generic approach for other biochemical applications.
机译:通过硬模板介导的方法,将聚多巴胺(PDA)和Fe3O4纳米颗粒结合到CaCO3微粒模板上,开发了一种构造健壮的有机-无机杂化磁性微胶囊的温和而简便的方法。更具体地,带负电的Fe 3 O 4纳米颗粒通过静电相互作用和物理吸收被吸附在多孔CaCO 3微粒的表面上或内腔中。然后,通过多巴胺的自聚合将磁性牺牲模板涂上PDA,以获得磁性PDA-CaCO3微粒,然后使用EDTA去除模板以构建有机-无机杂化磁性微囊。表征证实了微胶囊具有坚固的中空结构,使得酶内部以自由状态存在。 Fe3O4纳米颗粒在微囊中充当可回收成分和坚韧支架的关键因素,以维持微囊不塌陷和折叠。结合有机层和无机组分的优点,将微胶囊用于包囊念珠菌脂肪酶(CRL)。封装的CRL具有多个优势,包括提高封装效率,酶活性和长期存储稳定性。希望如此制备的微生物反应器可以为其他生化应用提供一种简便而通用的方法。

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