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基于苝的稳健发光金属有机骨架水凝胶作为 pH 响应荧光发射器用于心肌肌钙蛋白 I 的灵敏免疫分析。

Robust Luminescent Pyrene-Based Metal-Organic Framework Hydrogel as a pH-Responsive Fluorescence Emitter for Sensitive Immunoassay of Cardiac Troponin I.

机构信息

Key Laboratory of Luminescence Analysis and Molecular Sensing (Ministry of Education), College of Pharmaceutical Sciences, Southwest University, Chongqing 400715, China.

出版信息

Anal Chem. 2024 Sep 17;96(37):15042-15049. doi: 10.1021/acs.analchem.4c03407. Epub 2024 Sep 1.

Abstract

Despite many luminescent advantages including outstanding absorption coefficient and high quantum yield, pyrene and its derivatives have been suffering from a dramatic aggregation-caused quenching (ACQ) effect. Although the dramatic ACQ effect of pyrene-based fluorophores has been restrained in pyrene-doped metal-organic frameworks (MOFs), the low loading of fluorescent (FL) units substantially impedes the improved luminescent behaviors. Herein, pyrene-based MOFs hydrogel was synthesized with a high loading of pyrene as the unique organic linker blocks instead of a dopant in MOFs. The gel matrix contributed to rigidifying the location of the FL emitters and achieving intensive FL emission and high luminescent stability and therefore efficiently overcoming the ACQ effect. Furthermore, the protonation of pyrene in the MOFs hydrogel remarkably decreased the luminescent intensity, which endowed the FL hydrogel with highly pH-responsive activity in the broad range (pH 4-10). Interestingly, glucose oxidase was immobilized into ZIF-8 as a highly efficient luminescent quencher, which contributed to catalyzing the form of gluconic acid and thus drastically quenching the FL signal of the MOFs hydrogel. Furthermore, the emitter-quencher pair of pyrene-based MOFs hydrogel and glucose oxidase was successfully employed to develop an ultrasensitive FL immunoassay platform for cardiac troponin I (as a model analyte). The limit of detection for cardiac troponin I was 5.2 pg/mL (3σ). The proof-of-principle study demonstrated the thrilling auxiliary effect of tailorable MOFs hydrogel on boosting the feasibility of aqueous insoluble FL chromophores for trace analysis.

摘要

尽管具有出色的吸收系数和高光量子产率等许多发光优势,但芘及其衍生物一直存在严重的聚集诱导猝灭(ACQ)效应。尽管基于芘的荧光团的剧烈 ACQ 效应在芘掺杂的金属有机骨架(MOFs)中得到了抑制,但荧光(FL)单元的低负载量极大地阻碍了发光性能的提高。在此,以高负载量的芘作为独特的有机连接块而不是 MOFs 中的掺杂剂合成了基于芘的 MOFs 水凝胶。凝胶基质有助于固定 FL 发射器的位置,并实现强烈的 FL 发射和高发光稳定性,从而有效地克服了 ACQ 效应。此外,MOFs 水凝胶中芘的质子化显著降低了发光强度,使 FL 水凝胶在较宽的 pH 值范围内(pH 4-10)具有高度的 pH 响应活性。有趣的是,葡萄糖氧化酶被固定在 ZIF-8 中作为高效的发光猝灭剂,有助于催化葡萄糖酸的形成,从而强烈猝灭 MOFs 水凝胶的 FL 信号。此外,基于芘的 MOFs 水凝胶和葡萄糖氧化酶的发射器-猝灭剂对被成功用于开发用于心肌肌钙蛋白 I(作为模型分析物)的超灵敏 FL 免疫分析平台。心肌肌钙蛋白 I 的检测限为 5.2 pg/mL(3σ)。原理验证研究表明,可定制的 MOFs 水凝胶对提高痕量分析中水溶性差的 FL 生色团的可行性具有令人激动的辅助作用。

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