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用于光动力疗法的具有超快光敏剂负载和808 nm近红外光触发能力的介孔二氧化硅包覆上转换纳米粒子的制备

Fabrication of Mesoporous-Silica-Coated Upconverting Nanoparticles with Ultrafast Photosensitizer Loading and 808 nm NIR-Light-Triggering Capability for Photodynamic Therapy.

作者信息

Han Renlu, Shi Junhui, Liu Zongjun, Wang Hao, Wang You

机构信息

School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, P.R. China.

School of Chemical Engineering and Technology, Harbin Institute of Technology, Harbin, 150001, P.R. China.

出版信息

Chem Asian J. 2017 Sep 5;12(17):2197-2201. doi: 10.1002/asia.201700836. Epub 2017 Aug 3.

Abstract

A novel photodynamic therapy nanoplatform based on mesoporous-silica-coated upconverting nanoparticles (UCNP) with electrostatic-driven ultrafast photosensitizer (PS) loading and 808 nm near infrared (NIR)-light-triggering capabilities has been fabricated. By positively charging inner channels of the mesoporous silica shell with amino groups, a quantitative dosage of negatively charged PS, exemplified with Rose Bengal (RB) molecules, can be loaded in 2 min. In addition, the electrostatic-driven technique simultaneously provides the platform with both excellent PS dispersity and leak-proof properties due to the repulsion between the same-charged molecules and the electrostatic attraction between different-charged PS and silica channel walls, respectively. The as-coated silica shell with an ultrathin thickness of 12±2 nm is delicately fabricated to facilitate ultrafast PS loading and efficient energy transfer from UCNP to PS. The outside surface of the silica shell is capped with hydrophilic β-cyclodextrin, which not only enhances the dispersion of resulting nanoparticles in water but also plays a role of "gatekeeper", blocking the pore opening and preventing PS leaking. The in vitro cellular lethality experiment demonstrates that RB molecules can be activated to effectively generate singlet oxygen and kill cancer cells upon 808 nm NIR light irradiation.

摘要

一种基于介孔二氧化硅包覆的上转换纳米粒子(UCNP)的新型光动力疗法纳米平台已被制备出来,该平台具有静电驱动的超快光敏剂(PS)负载能力和808 nm近红外(NIR)光触发能力。通过用氨基使介孔二氧化硅壳的内部通道带正电,定量的带负电的PS(以孟加拉玫瑰红(RB)分子为例)可在2分钟内被负载。此外,由于同种电荷分子之间的排斥以及带不同电荷的PS与二氧化硅通道壁之间的静电吸引,静电驱动技术同时为该平台提供了优异的PS分散性和防泄漏性能。精心制备了厚度为12±2 nm的超薄包覆二氧化硅壳,以促进PS的超快负载以及从UCNP到PS的高效能量转移。二氧化硅壳的外表面覆盖有亲水性β-环糊精,这不仅增强了所得纳米粒子在水中的分散性,还起到“守门人”的作用,封闭孔口并防止PS泄漏。体外细胞杀伤实验表明,在808 nm NIR光照射下,RB分子可被激活以有效产生活性单线态氧并杀死癌细胞。

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