Universidad de Valencia, Instituto de Ciencia Molecular, ICMol, Catedrático José Beltrán, 2, 46980 Paterna, Valencia (Spain).
Chemistry. 2013 Sep 27;19(40):13538-46. doi: 10.1002/chem.201301353. Epub 2013 Aug 13.
A simple and straightforward method for the orthogonal functionalisation of upconverting NaYF4 nanocrystals (UCNCs)-doped withYb(3+) and Er(3+)-based on N-(3-dimethylaminopropyl)-N'-ethylcarbodiimide/N-hydroxysuccinimide (EDC/NHS) selective reactions between two dyes and two different reactive groups present at the periphery of the upconverting nanocrystals is reported. Organic-soluble UCNCs of 10 and 50 nm in size are encapsulated efficiently in a 1:1 mixture of two commercial 3000 Da poly(ethylene glycol) derivatives with two different reactive groups (amino and carboxylic groups). The water-dispersible UCNCs are non-cytotoxic, stable in the physiological environment, and present free amine and carboxylic reactive groups on their periphery, allowing rapid, selective, and modular covalent conjugation to payloads through EDC/NHS reactions. PEG-encapsulated UCNCs with and without covalent conjugation to payloads are characterised in vitro through spectroscopic, dynamic light scattering, and electron microscopy measurements. Living cell analyses coupled with TEM measurements confirm the uptake and low cytotoxicity of the coated UCNCs. They are linked covalently to two different dyes, internalised by living cells, and analysed by confocal microscopy. The related colocalisation measurements prove the reactivity of both amines and carboxylic acids on the periphery of the nanocrystals. This approach demonstrates that it is possible to produce water-dispersible and cyto-compatible dual-functional UCNCs.
一种简单直接的方法,用于在掺镱(Yb(3+)和铒(Er(3+)的上转换 NaYF4 纳米晶(N-(3-二甲氨基丙基)-N'-乙基碳二亚胺/N-羟基琥珀酰亚胺(EDC/NHS)之间进行正交功能化,反应基于两种染料和两种不同的反应基团,这些反应基团位于上转换纳米晶的外围。报道了尺寸为 10 和 50nm 的有机可溶性上转换纳米晶被两种不同反应基团(氨基和羧基)的两种商业 3000Da 聚(乙二醇)衍生物的 1:1 混合物有效包裹。水分散性上转换纳米晶在生理环境中稳定,具有游离的氨基和羧基反应基团,允许通过 EDC/NHS 反应快速、选择性和模块化地共价连接到有效载荷上。带有和不带有有效载荷共价连接的 PEG 包裹的上转换纳米晶通过光谱、动态光散射和电子显微镜测量进行体外表征。结合 TEM 测量的活细胞分析证实了涂层上转换纳米晶的摄取和低细胞毒性。它们通过共聚焦显微镜分析与两种不同的染料共价连接,并被活细胞内化。相关的共定位测量证明了纳米晶外围的两种胺和羧酸的反应性。这种方法证明了生产水可分散和细胞相容的双功能上转换纳米晶是可行的。