Synthesis of Core-shell Lanthanide-doped Upconversion Nanocrystals for Cellular Applications

被引:7
作者
Ai, Xiangzhao [1 ]
Lyu, Linna [1 ]
Mu, Jing [1 ]
Hu, Ming [1 ]
Wang, Zhimin [1 ]
Xing, Bengang [1 ,2 ]
机构
[1] Nanyang Technol Univ, Sch Phys & Math Sci, Div Chem & Biol Chem, Singapore 639798, Singapore
[2] ASTAR, Inst Mat Res & Engn, Singapore, Singapore
来源
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS | 2017年 / 129期
基金
中国国家自然科学基金;
关键词
Upconversion nanocrystals; co-precipitation method; lanthanide ion; near-infrared light; channel protein; OPTICAL-PROPERTIES; NANOPARTICLES; NANOSTRUCTURES; THERAPY;
D O I
10.3791/56416
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
Lanthanide-doped upconversion nanocrystals (UCNs) have attracted much attention in recent years based on their promising and controllable optical properties, which allow for the absorption of near-infrared (NIR) light and can subsequently convert it into multiplexed emissions that span over a broad range of regions from the UV to the visible to the NIR. This article presents detailed experimental procedures for high-temperature co-precipitation synthesis of core-shell UCNs that incorporate different lanthanide ions into nanocrystals for efficiently converting deep-tissue penetrable NIR excitation (808 nm) into a strong blue emission at 480 nm. By controlling the surface modification with biocompatible polymer (polyacrylic acid, PAA), the as-prepared UCNs acquires great solubility in buffer solutions. The hydrophilic nanocrystals are further functionalized with specific ligands (dibenzyl cyclooctyne, DBCO) for localization on the cell membrane. Upon NIR light (808 nm) irradiation, the upconverted blue emission can effectively activate the light-gated channel protein on the cell membrane and specifically regulate the cation (e.g., Ca2+) influx in the cytoplasm. This protocol provides a feasible methodology for the synthesis of core-shell lanthanide-doped UCNs and subsequent biocompatible surface modification for further cellular applications.
引用
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页数:9
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