Double-Amplified Electrochemiluminescence Immunoassay Sensor for Highly Sensitive Detection of CA19-9 Using a Ternary Semiconductor CdSSe

电化学发光 检出限 三元运算 线性范围 化学 纳米颗粒 免疫分析 纳米技术 光电子学 分析化学(期刊) 材料科学 色谱法 计算机科学 程序设计语言 抗体 免疫学 生物
作者
Zhengxing Gong,Baoyu Lu,Huan Wang,Xiang Ren,Xuejing Liu,Hongmin Ma,Dan Wu,Dawei Fan,Qin Wei
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:96 (4): 1678-1685 被引量:23
标识
DOI:10.1021/acs.analchem.3c04690
摘要

In this paper, an electrochemiluminescence (ECL) immunosensor for ultrasensitive detection of CA19-9 was constructed using ternary compound CdSSe nanoparticles as ECL emitter. The immunosensor employs Cu2S and gold-doped diindium trioxide (Au–In2O3) nanocubes as coreaction accelerators to achieve a double-amplification strategy. In general, a hexagonal maple leaf-shaped Cu2S with a large surface area was selected as the template, and the in situ growth of CdSSe on its surface was achieved using a hydrothermal method. The presence of Cu2S not only inhibited the aggregation of CdSSe nanoparticles to reduce their surface energy but also acted as an ECL cathode coreaction promoter, facilitating the generation of SO4•–. Consequently, the ECL intensity of CdSSe was significantly enhanced, and the reduction potential was significantly lower. In addition, the template method was employed to synthesize Au–In2O3 nanocubes, which offers the advantage of directly connecting materials with antibodies, resulting in a more stable construction of the immunosensor. Furthermore, In2O3 serves as a coreaction promoter, enabling the amplification strategy for ECL intensity of CdSSe, thus contributing to the enhanced sensitivity and performance of the immunosensor. The constructed immunosensor exhibited a wide linear range (100 μU mL–1 to 100 U mL–1) and a low detection limit of 80 μU mL–1, demonstrating its high potential and practical value for sensitive detection of CA19-9.
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