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点击化学介导的基于 Cu(II)-多聚谷氨酸配位化学和酶反应的粒子计数传感。

Click Chemistry-Mediated Particle Counting Sensing via Cu(II)-Polyglutamic Acid Coordination Chemistry and Enzymatic Reaction.

机构信息

Key Laboratory of Environment Correlative Dietology, Huazhong Agricultural University, Ministry of Education, Shizishan Street, Hongshan District, Wuhan 430070, China.

Wuhan Zhongke Zhikang Biological Technology Co., Ltd., Gaoxin Avenue, East Lake High-tech Zone, Wuhan 430074, China.

出版信息

Anal Chem. 2022 Apr 5;94(13):5293-5300. doi: 10.1021/acs.analchem.1c05127. Epub 2022 Mar 23.

Abstract

An electrical resistance-based particle counter (ERPC) with simple operation and high resolution has proved to be a promising biosensing toolkit, whereas amplification-free ERPC biosensors are incapable of analyzing trace small molecules due to their relatively low sensitivity. In this work, click chemistry-mediated particle counting sensing of small-molecule hazards in food samples with high sensitivity was developed. In this strategy, unbound alkyne-functionalized polystyrene microspheres were collected by magnetic separation from the copper-ion-mediated click reaction between alkyne-functionalized polystyrene microspheres and azido-functionalized magnetic beads, which could be used as signal probes for the readout. This click chemistry-mediated ERPC biosensor converts the detection of targets to the quantification of copper ions or ascorbic acid by performing competitive immunoassay-based coordination chemistry and enzymatic reaction, respectively. The sensitivity of the ERPC biosensor has been improved by an order of magnitude due to the signal amplification effects of click chemistry, coordination adsorption, and enzyme catalysis. Furthermore, because of the efficient separation and enrichment of immunomagnetic beads and the robustness of click chemistry, the interference from food matrixes and immunoassay is effectively reduced, and thus, our strategy is exceedingly suitable for detecting trace targets in complex samples.

摘要

基于电阻的粒子计数器(ERPC)具有操作简单、分辨率高的特点,已被证明是一种很有前途的生物传感工具包,而无需放大的 ERPC 生物传感器由于其相对较低的灵敏度,无法分析痕量小分子。在这项工作中,开发了一种基于点击化学的、用于高灵敏度分析食物样品中小分子危害的粒子计数传感方法。在该策略中,未结合的炔基功能化聚苯乙烯微球通过磁分离从铜离子介导的炔基功能化聚苯乙烯微球和叠氮功能化磁性珠之间的点击反应中收集,可作为读出的信号探针。这种点击化学介导的 ERPC 生物传感器通过执行基于竞争性免疫测定的配位化学和酶反应,将目标物的检测转化为铜离子或抗坏血酸的定量。由于点击化学、配位吸附和酶催化的信号放大效应,ERPC 生物传感器的灵敏度提高了一个数量级。此外,由于免疫磁性珠的高效分离和富集以及点击化学的稳健性,有效地减少了食物基质和免疫测定的干扰,因此,我们的策略非常适合检测复杂样品中的痕量目标。

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