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负载金纳米团簇的溶菌酶纳米颗粒的合成用于自来水、含氰苷植物和土壤中氰化物的比率荧光检测。

Synthesis of gold nanoclusters-loaded lysozyme nanoparticles for ratiometric fluorescent detection of cyanide in tap water, cyanogenic glycoside-containing plants, and soils.

作者信息

Tseng Wei-Bin, Rau Jui-Yeh, Chiou Hung-Chi, Tseng Wei-Lung

机构信息

College of Ecology and Resource Engineering, Wuyi University, China; Fujian Provincial Key Laboratory of Eco-Industrial Green Technology, Wuyi University, China.

College of Ecology and Resource Engineering, Wuyi University, China; Fujian Provincial Key Laboratory of Eco-Industrial Green Technology, Wuyi University, China.

出版信息

Environ Res. 2022 May 1;207:112144. doi: 10.1016/j.envres.2021.112144. Epub 2021 Oct 5.

Abstract

The modification of protein-stabilized gold nanoclusters with fluorophores has been intensively applied for the ratiometric detection of biomolecules, metal ions, and anions. This study developed a straightforward strategy to prepare lysozyme nanoparticle-encapsulated gold nanoclusters (LysNP-AuNCs) as a dual-emission probe for the ratiometric sensing of cyanide through fluorescence resonance energy transfer (FRET) without the conjugation of additional fluorophores. The reduction of gold ion precursors with lysozyme generated lysozyme-stabilized AuNCs under an alkaline pH, which were demonstrated to self-assemble into nanoaggregates during the formation of AuNCs. The aggregated lysozyme molecules on the AuNCs were treated with glutaraldehyde, triggering the conversion of the aggregated lysozymes into blue-emitting lysozyme nanoparticles. As a result, the AuNCs were well distributed inside a single lysozyme nanoparticle, as demonstrated by transmission electron microscopy. The presence of cyanide triggered the etching of the AuNCs in the LysNP-AuNCs, leading to the suppression of FRET from lysozyme nanoparticle to AuNCs. The LysNP-AuNC probe was implemented for FRET detection of cyanide with a linear range of 3-100 μM. Additionally, the selectivity of the LysNP-AuNC probe for cyanide toward other anions was remarkably high. The practicality of the proposed probe was evaluated by quantifying cyanide in tap water and soils and monitoring the liberation of hydrogen cyanide from cyanogenic glycoside-containing foods.

摘要

用荧光团修饰蛋白质稳定的金纳米团簇已被广泛应用于生物分子、金属离子和阴离子的比率检测。本研究开发了一种直接的策略,制备溶菌酶纳米颗粒包裹的金纳米团簇(LysNP-AuNCs)作为双发射探针,通过荧光共振能量转移(FRET)对氰化物进行比率传感,无需额外连接荧光团。在碱性pH条件下,用溶菌酶还原金离子前体生成溶菌酶稳定的AuNCs,已证明其在AuNCs形成过程中自组装成纳米聚集体。用戊二醛处理AuNCs上聚集的溶菌酶分子,促使聚集的溶菌酶转化为发射蓝光的溶菌酶纳米颗粒。结果,通过透射电子显微镜证明,AuNCs很好地分布在单个溶菌酶纳米颗粒内部。氰化物的存在引发了LysNP-AuNCs中AuNCs的蚀刻,导致从溶菌酶纳米颗粒到AuNCs的FRET受到抑制。LysNP-AuNC探针用于FRET检测氰化物,线性范围为3-100μM。此外,LysNP-AuNC探针对氰化物相对于其他阴离子的选择性非常高。通过对自来水和土壤中的氰化物进行定量以及监测含氰苷食物中氰化氢的释放,评估了所提出探针的实用性。

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