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用于细胞内生物催化的酶包封中空二氧化硅纳米球

Enzyme encapsulated hollow silica nanospheres for intracellular biocatalysis.

作者信息

Chang Feng-Peng, Hung Yann, Chang Jen-Hsuan, Lin Chen-Han, Mou Chung-Yuan

机构信息

Department of Chemistry, National Taiwan University , Taipei, Taiwan 10617.

出版信息

ACS Appl Mater Interfaces. 2014 May 14;6(9):6883-90. doi: 10.1021/am500701c. Epub 2014 Apr 15.

Abstract

Hollow silica nanospheres (HSN) with low densities, large interior spaces and permeable silica shells are suitable for loading enzymes in the cavity to carry out intracellular biocatalysis. The porous shell can protect the encapsulated enzymes against proteolysis and attenuate immunological response. We developed a microemulsion-templating method for confining horseradish peroxidase (HRP) in the cavity of HSN. This simple one-pot enzyme encapsulation method allows entrapping of the enzyme, which retains high catalytic activity. Compared with HRP supported on solid silica spheres, HRP@HSN with thin porous silica shells displayed better enzyme activity. The small HRP@HSN (∼50 nm in diameter), giving satisfactory catalytic activity, can act as an intracellular catalyst for the oxidation of the prodrug indole-3-acetic acid to produce toxic free radicals for killing cancer cells. We envision this kind of hollow nanosystem could encapsulate multiple enzymes or other synergistic drugs and function as therapeutic nanoreactors.

摘要

低密度、内部空间大且二氧化硅壳具有渗透性的中空二氧化硅纳米球(HSN)适合在腔内装载酶以进行细胞内生物催化。多孔壳可保护被包封的酶免受蛋白水解作用并减弱免疫反应。我们开发了一种微乳液模板法,用于将辣根过氧化物酶(HRP)限制在HSN的腔内。这种简单的一锅法酶包封方法能够捕获酶,且酶保留了高催化活性。与负载在固体二氧化硅球上的HRP相比,具有薄多孔二氧化硅壳的HRP@HSN表现出更好的酶活性。直径约50 nm的小尺寸HRP@HSN具有令人满意的催化活性,可作为细胞内催化剂,将前药吲哚 - 3 - 乙酸氧化以产生有毒自由基来杀死癌细胞。我们设想这种中空纳米系统可以封装多种酶或其他协同药物,并作为治疗性纳米反应器发挥作用。

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