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基于银纳米簇聚集诱导发光增强的可逆发光纳米开关用于无机焦磷酸酶活性的荧光开启测定。

Reversible Luminescent Nanoswitches Based on Aggregation-Induced Emission Enhancement of Silver Nanoclusters for Luminescence Turn-on Assay of Inorganic Pyrophosphatase Activity.

机构信息

College of Chemistry and Life Science, Zhejiang Normal University , Jinhua 321004, People's Public of China.

出版信息

Anal Chem. 2017 May 2;89(9):4994-5002. doi: 10.1021/acs.analchem.7b00319. Epub 2017 Apr 12.

Abstract

Unique aggregation-induced emission (AIE) property has been found and widely applied in chemo/biosensors for thiolated gold nanoclusters and copper nanoclusters; however, little is known about this property of thiolate-protected silver nanoclusters. In this work, specific aggregation-induced emission enhancement (AIEE) of glutathione-capped silver nanoclusters (AgNCs) was verified via its solid-state luminescence and enhanced emission in poor solvent, three stimuli responsive nanoswitches were constructed based on its AIEE property, and a reliable and sensitive PPase assay was developed via ion-triggered luminescence switch. Glutathione-capped AgNCs from a facile one-pot synthesis were found to possess bright red luminescence and aggregation-induced emission enhancement property. This AIEE feature enables AgNCs in sensitive response to pH and temperature in a reversible way, allowing the two nanoswitches to precisely monitor the change of environmental pH and temperature. Complexation reactions among AgNCs, aluminum cation and PPi were also designed for an ion-triggered luminescence nanoswitch, which allows selective response to aluminum cation or PPi in luminescence. This ion-driven luminescence switch is further utilized to design a novel detection strategy for PPase activity through competitive coordination reactions. Our method illustrates a novel detection strategy mediated by complexation reaction between Al and AgNCs avoiding the involvement of copper cations in the detection, and this developed assay performed well in detection of PPase level in fresh rat serum. This work confirms unique aggregation-induced emission enhancement property of glutathione-capped AgNCs, constructs multiple luminescence switches based on its multistimuli responsive behaviors, and demonstrates an example of Al-mediated detection strategy for PPase assay.

摘要

已发现并广泛应用于硫醇保护的金纳米簇和铜纳米簇的化学/生物传感器中的独特聚集诱导发射(AIE)性质;然而,对于硫醇保护的银纳米簇的这种性质知之甚少。在这项工作中,通过其固态发光和不良溶剂中的增强发射验证了谷胱甘肽保护的银纳米簇(AgNCs)的特定聚集诱导发射增强(AIEE),并基于其 AIEE 性质构建了三个刺激响应纳米开关,并通过离子触发的发光开关开发了一种可靠且灵敏的 PPase 测定法。从简便的一锅合成中发现谷胱甘肽保护的 AgNCs 具有明亮的红色发光和聚集诱导发射增强特性。这种 AIEE 特征使 AgNCs 能够以可逆的方式对 pH 和温度做出敏感响应,使两个纳米开关能够精确监测环境 pH 和温度的变化。AgNCs、铝阳离子和 PPi 之间的络合反应也被设计用于离子触发的发光纳米开关,该开关允许对铝阳离子或 PPi 进行选择性响应发光。该离子驱动的发光开关进一步用于设计一种通过络合反应(Al 和 AgNCs 之间)进行的新型 PPase 活性检测策略,避免了检测中铜离子的参与,并且该开发的测定法在新鲜大鼠血清中 PPase 水平的检测中表现良好。这项工作证实了谷胱甘肽保护的 AgNCs 具有独特的聚集诱导发射增强性质,基于其多刺激响应行为构建了多个发光开关,并展示了一种用于 PPase 测定的 Al 介导的检测策略的示例。

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