原位生成碲化镉量子点封装的铪聚合物膜,促进肿瘤生物标记物的电化学发光分析。

IF 3.8 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Haiyin Li, Zhixin Wang, Feng Li, Panpan Gai
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引用次数: 0

摘要

探索构建一种发射亮度高、稳定性好、功能强的界面,以开发高性能的肿瘤生物标记物电化学发光(ECL)生物传感器,是目前的热门话题,但也面临着巨大的挑战。在此,我们报告了一种定向附着和原位自组装策略,可将 CdTe QD 封装 Hf 聚合物膜一步制备到 ITO 表面(Hf-CP/CdTe QDs/APS/ITO)。Hf-CP/CdTe QDs/APS/ITO 具有出色的稳定性、高 ECL 发射率以及对 ssDNA 和 dsDNA 以及单核苷酸 (mNs) 的特异性吸附。这些有趣的特性使其成为合理开发癌症抗原 125(CA125)无固定 ECL 生物传感器的理想界面。CA125 对 ON 的识别导致形成 CA125@ON,它与 Fc-ssDNA 杂交以切换 Exo III 辅助消化,从而减少锚定在电极表面的 Fc 基团数量并阻断电子转移。与没有 CA125 的情况相比,ECL 发射的显著恢复是由 CA125 浓度决定的。因此,CA125 与其他生物标记物的高灵敏度分析得以实现,检测限低至 2.57 pg/mL。我们设想这项工作将为开发具有优良特性的 ECL 生物传感器提供一条新的途径,为癌症的早期准确诊断提供巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In situ generated CdTe quantum dot-encapsulated hafnium polymer membrane to boost electrochemiluminescence analysis of tumor biomarkers

In situ generated CdTe quantum dot-encapsulated hafnium polymer membrane to boost electrochemiluminescence analysis of tumor biomarkers

Exploring the construction of an interface with bright emission, fabulous stability, and good function to develop high-performance electrochemiluminescence (ECL) biosensors for tumor biomarkers is in high demand but faces a huge challenge. Herein, we report an oriented attachment and in situ self-assembling strategy for one-step fabrication of CdTe QD-encapsulated Hf polymer membrane onto an ITO surface (Hf-CP/CdTe QDs/APS/ITO). Hf-CP/CdTe QDs/APS/ITO is fascinating with excellent stability, high ECL emission, and specific adsorption toward ssDNA against dsDNA and mononucleotides (mNs). These interesting properties make it an ideal interface to rationally develop an immobilization-free ECL biosensor for cancer antigen 125 (CA125), used as a proof-of-concept analyte, based on target-aptamer recognition-promoted exonuclease III (Exo III)-assisted digestion. The recognition of ON by CA125 leads to the formation of CA125@ON, which hybridizes with Fc-ssDNA to switch Exo III-assisted digestion, decreasing the amount of Fc groups anchored onto the electrode’s surface and blocking electron transfer. As compared to the case where CA125 was absent, significant ECL emission recovery is determined and relies on CA125 concentration. Thus, highly sensitive analysis of CA125 against other biomarkers was achieved with a limit of detection down to 2.57 pg/mL. We envision this work will provide a new path to develop ECL biosensors with excellent properties, which shows great potential for early and accurate diagnosis of cancer.

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来源期刊
CiteScore
8.00
自引率
4.70%
发文量
638
审稿时长
2.1 months
期刊介绍: Analytical and Bioanalytical Chemistry’s mission is the rapid publication of excellent and high-impact research articles on fundamental and applied topics of analytical and bioanalytical measurement science. Its scope is broad, and ranges from novel measurement platforms and their characterization to multidisciplinary approaches that effectively address important scientific problems. The Editors encourage submissions presenting innovative analytical research in concept, instrumentation, methods, and/or applications, including: mass spectrometry, spectroscopy, and electroanalysis; advanced separations; analytical strategies in “-omics” and imaging, bioanalysis, and sampling; miniaturized devices, medical diagnostics, sensors; analytical characterization of nano- and biomaterials; chemometrics and advanced data analysis.
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