Self-On Aptasensor Based on Interface Oxidation-Induced H2O2 Etching Strategy for Ultrasensitive Detection of Myogenin

化学 蚀刻(微加工) 检出限 接口(物质) 纳米技术 分析化学(期刊) 色谱法 分子 有机化学 图层(电子) 吉布斯等温线 材料科学
作者
Ying Su,Xianzhen Song,Jia Wang,Zhongping Huang,Weiwei Qu,Lu Zhao,Caifeng Ding
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:97 (39): 21344-21350
标识
DOI:10.1021/acs.analchem.5c02813
摘要

Rhabdomyosarcoma (RMS), a highly malignant tumor that is more common in children, has a high mortality rate. So far, there have been few reports on the early diagnosis of RMS. As an effective biomarker for RMS, the serum level of myoglobin (MyoG) is of significant value for the clinical diagnosis of RMS. In this work, an ultrasensitive electrochemiluminescence (ECL) self-on aptasensor was developed using the interface oxidation-induced H2O2 etching strategy for trace detection of MyoG. Specifically, l-tryptophan (l-Trp) and ascorbic acid reacted at a given voltage to produce H2O2, which etched the external Ag shell of NaF4:Eu3+@Ag and released the encapsulated NaF4:Eu3+ luminophores. Meanwhile, due to the high interfacial conductivity and catalytic activity of Au@Pt nanoblocks, the ECL emission of NaF4:Eu3+ was enhanced, achieving strong signal self-on. When the MyoG antigen was present, the MyoG aptamer-l-Trp (Apt-l-Trp) was separated from the electrode surface due to the specific binding between the MyoG antigen and Apt. Therefore, the generation of H2O2 was interrupted, thus terminating the etching of the Ag shell and leading to signal off. Based on this, the proposed ECL aptasensor achieved sensitive detection of MyoG in a wide concentration range of 1 pg/mL to 10 μg/mL, with a detection limit of 296.15 fg/mL (S/N = 3). The designed interface oxidation-induced H2O2 etching strategy extends the construction means of self-on sensors and provides an effective reference for the diagnosis of early RMS.
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