Karlsruhe Institute of Technology (KIT), Institute of Nanotechnology (INT), Hermann-von-Helmholtz Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
ACS Sens. 2022 Aug 26;7(8):2312-2319. doi: 10.1021/acssensors.2c00934. Epub 2022 Jul 27.
Chemiluminescence-based detection methods offer a superior signal-to-noise ratio and are commonly adopted for biosensors. This work presents the design and implementation of a supramolecular assay based on a chemiluminescent chemosensor. Specifically, an indicator displacement assay (IDA) with the supramolecular host-guest complex of chemiluminescent phenoxy 1,2-dioxetane and cucurbit[8]uril enables the low-micromolar detection of drugs in human urine and human serum samples. Cucurbit[8]uril thereby acts as a non-surfactant chemiluminescence enhancer and a synthetic receptor. Additionally, we show that adding an equimolar amount of cucurbit[8]uril to a commercially available dioxetane used in standard enzymatic chemiluminescence immunoassays enhances the chemiluminescence by more than 15 times. Finally, we demonstrate that a chemiluminescence resonance energy transfer between a unimolecular macrocyclic cucurbit[7]uril-dye conjugate and a phenoxy 1,2-dioxetane can be utilized to detect the herbicide paraquat at a micromolar concentration in aqueous media.
基于化学发光的检测方法提供了优越的信噪比,常用于生物传感器。本工作提出了一种基于化学发光化学传感器的超分子分析的设计和实现。具体来说,以化学发光苯氧基 1,2-二氧杂环乙烷和葫芦[8]脲的超分子主客体复合物为指示剂置换分析(IDA),可实现对人尿和人血清样品中药物的低微摩尔检测。葫芦[8]脲因此可作为非表面活性剂化学发光增强剂和合成受体。此外,我们还表明,向市售的用于标准酶化学发光免疫分析的二氧杂环乙烷中添加等摩尔量的葫芦[8]脲可使化学发光增强 15 倍以上。最后,我们证明,在水相介质中,通过单分子大环葫芦[7]脲-染料缀合物和苯氧基 1,2-二氧杂环乙烷之间的化学发光共振能量转移,可以检测出百草枯除草剂在微摩尔浓度下的浓度。