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采用囊泡超组装方法合成胺功能化中空树突状介孔硅纳米球用于蛋白质递药。

A Vesicle Supra-Assembly Approach to Synthesize Amine-Functionalized Hollow Dendritic Mesoporous Silica Nanospheres for Protein Delivery.

机构信息

Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Small. 2016 Oct;12(37):5169-5177. doi: 10.1002/smll.201602052. Epub 2016 Aug 3.

Abstract

Intracellular delivery of proteins is a promising strategy of intervention in disease, which relies heavily on the development of efficient delivery platforms due to the cell membrane impermeability of native proteins, particularly for negatively charged large proteins. This work reports a vesicle supra-assembly approach to synthesize novel amine-functionalized hollow dendritic mesoporous silica nanospheres (A-HDMSN). An amine silica source is introduced into a water-oil reaction solution prior to the addition of conventional silica source tetraethylorthosilicate. This strategy favors the formation of composite vesicles as the building blocks which further assemble into the final product. The obtained A-HDMSN have a cavity core of ≈170 nm, large dendritic mesopores of 20.7 nm in the shell and high pore volume of 2.67 cm g . Compared to the calcined counterpart without amine groups (C-HDMSN), A-HDMSN possess enhanced loading capacity to large negative proteins (IgG and β-galactosidase) and improved cellular uptake performance, contributed by the cationic groups. A-HDMSN enhance the intracellular uptake of β-galactosidase by up to 5-fold and 40-fold compared to C-HDMSN and free β-galactosidase, respectively. The active form of β-galactosidase delivered by A-HDMSN retains its intracellular catalytic functions.

摘要

蛋白质的细胞内递送是一种很有前途的疾病干预策略,由于天然蛋白质,特别是带负电荷的大蛋白质,具有细胞膜不可渗透性,因此严重依赖于高效递药平台的发展。本工作报道了一种囊泡超组装方法来合成新型胺功能化空心树枝状介孔硅纳米球(A-HDMSN)。在添加传统硅源正硅酸乙酯之前,将胺硅源引入油包水反应溶液中。这种策略有利于形成复合囊泡作为构建块,进一步组装成最终产物。所得到的 A-HDMSN 具有约 170nm 的空腔核心,壳层中 20.7nm 的大树枝状介孔和 2.67cm3/g 的高孔体积。与没有胺基团的煅烧对应物(C-HDMSN)相比,A-HDMSN 对大的负电荷蛋白质(IgG 和β-半乳糖苷酶)具有增强的负载能力和改善的细胞摄取性能,这归因于阳离子基团。与 C-HDMSN 和游离β-半乳糖苷酶相比,A-HDMSN 将β-半乳糖苷酶的细胞内摄取量分别提高了 5 倍和 40 倍。由 A-HDMSN 递送至细胞内的β-半乳糖苷酶的活性形式保留了其细胞内催化功能。

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