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多孔复合物介导的卟啉的电致化学发光生物分析中的双重发射。

Porous Complex-Mediated Dual Emission of Porphyrins for the Electrochemiluminescence Bioassay.

机构信息

Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, PR China.

出版信息

Anal Chem. 2024 Jan 30;96(4):1427-1435. doi: 10.1021/acs.analchem.3c03406. Epub 2024 Jan 16.

Abstract

Although porphyrins make up a promising class of electrochemiluminescence (ECL) luminophors, their aggregation-caused quenching (ACQ) characteristics lead to inferior ECL efficiency (Φ). Furthermore, current application of porphyrins is limited to cathodic emission. This work creatively exploited a cage-like porous complex (referred to as SWU-1) as the microreactor to recede the ACQ effect while modulating dual ECL emission of meso-tetra(4-carboxyphenyl)porphine (TCPP), which self-assembled with SWU-1 to form TCPP@SWU-1 nanocapsules (TCPP@SWU-1 NCs). As the microreactor, SWU-1 not only effectively constrained TCPP aggregation to improve electron-hole recombination efficiency but also improved stability of anion and cation radicals, thus significantly enhancing the dual emission of TCPP. Compared with TCPP aggregates, the resulting TCPP@SWU-1 NCs exhibited significantly enhanced anodic and cathodic emission, and their Φ was increased by 8.7-fold and 3.9-fold, respectively. Furthermore, black hole quencher-2 (BHQ2) can simultaneously quench anodic and cathodic signals. TCPP@SWU-1 NCs coupling BHQ2 conveniently achieved an ECL ratio detection of miRNA-126, and the limit of detection (S/N = 3) was 4.1 aM. This work pioneered the development of the cage-like porous complex SWU-1 as the microreactor to alleviate defects of the ACQ effect and mediate dual emission of TCPP. The coupling of dual-emitting TCPP@SWU-1 NCs and dual-function moderator BHQ2 created a novel single-luminophor-based ratio system for bioanalysis and provided a promising ECL analysis approach for miRNA-126.

摘要

尽管卟啉类化合物构成了一类很有前途的电化学发光(ECL)发光体,但它们的聚集导致的猝灭(ACQ)特性导致 ECL 效率(Φ)较低。此外,目前卟啉的应用仅限于阴极发射。本工作创造性地利用笼状多孔配合物(简称 SWU-1)作为微反应器,在调节介体四(4-羧基苯基)卟啉(TCPP)的双 ECL 发射的同时,消除 ACQ 效应,TCPP 与 SWU-1 自组装形成 TCPP@SWU-1 纳米胶囊(TCPP@SWU-1 NCs)。作为微反应器,SWU-1 不仅有效地抑制了 TCPP 的聚集,提高了电子-空穴复合效率,而且提高了阴阳离子自由基的稳定性,从而显著增强了 TCPP 的双发射。与 TCPP 聚集体相比,所得的 TCPP@SWU-1 NCs 表现出显著增强的阳极和阴极发射,其Φ分别提高了 8.7 倍和 3.9 倍。此外,黑洞猝灭剂-2(BHQ2)可以同时猝灭阳极和阴极信号。TCPP@SWU-1 NCs 与 BHQ2 耦合并方便地实现了 miRNA-126 的 ECL 比检测,其检测限(S/N = 3)为 4.1 aM。本工作开创了笼状多孔配合物 SWU-1 作为微反应器的发展,以缓解 ACQ 效应的缺陷并调节 TCPP 的双发射。双发射 TCPP@SWU-1 NCs 与双功能调节剂 BHQ2 的结合为生物分析创建了一种新型的基于单发光体的比率系统,并为 miRNA-126 提供了一种有前途的 ECL 分析方法。

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