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用于对高价金属离子进行可逆响应的荧光木质素碳点及其生物应用

Fluorescent Lignin Carbon Dots for Reversible Responses to High-Valence Metal Ions and Its Bioapplications.

作者信息

Li Yanpeng, Ren Junli, Sun Runcang, Wang Xiaohui

出版信息

J Biomed Nanotechnol. 2018 Sep 1;14(9):1543-1555. doi: 10.1166/jbn.2018.2610.

Abstract

A sensitive and reversible sensing platform based on fluorescent carbon dots (CDs) allowing capture and detection of metal ions is of significance for developing diagnostic probes and in-situ environmental-monitoring. Here, a simple and effective method for converting biomass lignin into fluorescent CDs is developed. The obtained CDs, with stable fluorescence and excellent water solubility, are fabricated as unique model biosensors to access the metal-induced quenching mechanism. It is demonstrated that selective fluorescence quenching behaviors of lignin CDs are firstly found related to the valence-state of metal ions. Moreover, a reversible control of CDs fluorescence is realized by introducing reducing agents. This novel biosensor and the approach to quenching mechanism may evoke new insight in designing ions-sensor and monitoring biologic redox signal.

摘要

基于荧光碳点(CDs)的灵敏且可逆的传感平台可用于捕获和检测金属离子,这对于开发诊断探针和原位环境监测具有重要意义。在此,开发了一种将生物质木质素转化为荧光碳点的简单有效方法。所获得的具有稳定荧光和优异水溶性的碳点被制作为独特的模型生物传感器,以探究金属诱导的猝灭机制。结果表明,首次发现木质素碳点的选择性荧光猝灭行为与金属离子的价态有关。此外,通过引入还原剂实现了对碳点荧光的可逆控制。这种新型生物传感器及其猝灭机制的研究方法可能会为设计离子传感器和监测生物氧化还原信号带来新的见解。

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