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通过静电和疏水相互作用实现刺激响应性分子探针的聚集诱导发光:有机溶剂含量的影响及其在碱性磷酸酶活性检测中的应用

Stimuli-responsive aggregation-induced emission of molecular probes by electrostatic and hydrophobic interactions: Effect of organic solvent content and application for probing of alkaline phosphatase activity.

作者信息

Gao Fengli, Chang Yong, Zhang Jingyi, Wang Lingli, Liu Lin

机构信息

College of Chemistry and Chemical Engineering, Anyang Normal University, Anyang, Henan, 455000, PR China.

College of Chemistry and Chemical Engineering, Anyang Normal University, Anyang, Henan, 455000, PR China; School of Chemistry and Materials Engineering, Jiangnan University, Wuxi, Jiangsu, 214122, PR China.

出版信息

Talanta. 2023 Dec 1;265:124923. doi: 10.1016/j.talanta.2023.124923. Epub 2023 Jul 6.

Abstract

We suggest that aggregation-induced emission (AIE) molecular probes with single charged/reactive group can exist in the formation of nanostructures but not monomers at extremely low organic solvent content. The nanoaggregates show good dispersivity and emit week emission. Stimuli-responsive assembly of nanoaggregates by electrostatic interactions can turn on the fluorescence, facilitating the design of biosensors with single-charged molecular probes as the AIE fluorogens. To prove the concept, tetraphenylethene-substituted pyridinium salt (TPE-Py) was used as the AIE fluorogen for probing of alkaline phosphatase (ALP) activity with pyrophosphate ion (PPi) as the enzyme substrate. The dynamic light scattering and transmission electron microscope experiments demonstrated that TPE-Py probes existed in aqueous solution at nanometer size and morphology. Stimuli such as the negatively charged PPi, citrate, ATP, ADP, NADP and DNA could trigger the aggregation of the positively charged TPE-Py nanoparticles, thus enhancing the fluorescence via AIE effect. ALP-enzymatic hydrolysis of PPi into two phosphate ions (Pi) limited the aggregation of TPE-Py nanoparticles. The strategy was used for the assay of ALP with a low detection limit (1 U/L) and wide linear range (1-200 U/L). We also investigated the effect of organic solvent content on the AIE process and found that high concentration of organic solvent can prevent the hydrophobic interaction between AIE molecules but show no essential influence on the electrostatic interaction-mediated assembly. The work should be evaluable for understanding AIE phenomenon and developing novel, simple and sensitive biosensors using a molecular probe with single charged/reactive group as the signal reporter.

摘要

我们认为,带有单电荷/反应性基团的聚集诱导发光(AIE)分子探针在极低有机溶剂含量下能够形成纳米结构而非单体。这些纳米聚集体具有良好的分散性且发射较弱的荧光。通过静电相互作用实现的纳米聚集体的刺激响应性组装能够开启荧光,这有助于设计以单电荷分子探针作为AIE荧光团的生物传感器。为了验证这一概念,以四苯乙烯取代的吡啶盐(TPE-Py)作为AIE荧光团,以焦磷酸离子(PPi)作为酶底物来探测碱性磷酸酶(ALP)的活性。动态光散射和透射电子显微镜实验表明,TPE-Py探针在水溶液中以纳米尺寸和形态存在。诸如带负电荷的PPi、柠檬酸盐、ATP、ADP、NADP和DNA等刺激物能够触发带正电荷的TPE-Py纳米颗粒的聚集,从而通过AIE效应增强荧光。PPi被ALP酶水解成两个磷酸根离子(Pi)会限制TPE-Py纳米颗粒的聚集。该策略用于ALP的检测,检测限低(1 U/L)且线性范围宽(1 - 200 U/L)。我们还研究了有机溶剂含量对AIE过程的影响,发现高浓度有机溶剂能够阻止AIE分子之间的疏水相互作用,但对静电相互作用介导的组装没有本质影响。这项工作对于理解AIE现象以及开发以带有单电荷/反应性基团的分子探针作为信号报告分子的新型、简单且灵敏的生物传感器具有重要价值。

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