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带电荷的溶剂化显色染料作为pH无关型荧光和比色离子选择性纳米传感器中的信号转导器。

Charged solvatochromic dyes as signal transducers in pH independent fluorescent and colorimetric ion selective nanosensors.

作者信息

Xie Xiaojiang, Gutiérrez Agustín, Trofimov Valentin, Szilagyi Istvan, Soldati Thierry, Bakker Eric

机构信息

Department of Inorganic and Analytical Chemistry, University of Geneva , Quai Ernest-Ansermet 30, CH-1211, Geneva, Switzerland.

Department of Biochemistry, University of Geneva , Quai Ernest-Ansermet 30, CH-1211, Geneva, Switzerland.

出版信息

Anal Chem. 2015 Oct 6;87(19):9954-9. doi: 10.1021/acs.analchem.5b02566.

Abstract

Ionophore-based ion selective optical nanosensors that operate independently of the sample pH are developed here by the use of electrically charged solvatochromic dyes as signal transducers. A series of dye molecules with a D-π-A structure was synthesized and characterized in various solvents and incorporated into ion selective nanospheres for K(+), Na(+), and H(+). Since dye leakage was greatly suppressed when the solvatochromic dyes were encapsulated in the nanosphere core, ion sensing nanospheres were explored for cellular ion imaging in Dictyostelium discoideum live cells but spontaneous dye loss resulted in undesired staining of cells. The in vitro analysis of potassium in human plasma was successfully demonstrated with this approach. A theoretical model was developed for the response of the ion selective nanosensors containing charged solvatochromic dyes. The nanosensors exhibited a tunable response range, high sensitivity, and good stability.

摘要

本文通过使用带电的溶剂化显色染料作为信号传感器,开发了基于离子载体的、独立于样品pH值运行的离子选择性光学纳米传感器。合成了一系列具有D-π-A结构的染料分子,并在各种溶剂中对其进行了表征,然后将其掺入用于钾离子、钠离子和氢离子的离子选择性纳米球中。由于当溶剂化显色染料被封装在纳米球核心时,染料泄漏得到了极大抑制,因此探索了离子传感纳米球用于盘基网柄菌活细胞中的细胞离子成像,但染料的自发损失导致了细胞的意外染色。该方法成功地证明了对人血浆中钾离子的体外分析。针对含有带电溶剂化显色染料的离子选择性纳米传感器的响应,开发了一个理论模型。这些纳米传感器表现出可调的响应范围、高灵敏度和良好的稳定性。

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