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A novel electrochemiluminescent immunosensor based on CdS-coated ZnO nanorod arrays for HepG2 cell detection

机译:基于一种新型electrochemiluminescent免疫传感器对氧化锌纳米线阵列CdS-coated HepG2细胞检测

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In this work, the highly oriented CdS-coated-ZnO nanorod arrays have been fabricated. The CdS-coated-ZnO nanorod arrays show high electrochemiluminescence intensity, fast response and good stability. All of the desirable properties spur the development of an ECL immunosensor for the detection of the liver cancer cell line (HepG2 cells). Two successive modification steps of 3-aminopropyltriethoxysilane and gold nanoparticles onto the CdS-coated-ZnO nanorod arrays not only offer the substrates for conjugation of antibody, but also effectively enhance the ECL signal, resulting in production of the high performance ECL immunosensor. The ECL immunosensor exhibits a sensitive response to HepG2 cells in a linear range of 300-10000 cells mL(-1) with a detection limit of 256 cells mL(-1). The proposed sensor characteristics of high specificity, good reproducibility and remarkable stability will provide a sensitive, selective, and convenient approach for the clinical detection of cancer cells.
机译:在这部作品中,高度定向CdS-coated-ZnO奈米棒阵列制作。CdS-coated-ZnO奈米棒阵列显示高电化学发光强度、快速响应和良好的稳定性。属性促进它的发展免疫传感器的检测肝脏癌症细胞系(HepG2细胞)。修改步骤3-aminopropyltriethoxysilane和黄金纳米粒子在CdS-coated-ZnO奈米棒阵列不仅提供的基板结合的抗体,但也有效提高发射极耦合逻辑信号,导致生产高性能的ECL免疫传感器。免疫传感器展览一个敏感的反应HepG2细胞的线性范围300 - 10000细胞毫升(1)与256个细胞的检出限毫升(1)。特异性高,再现性好非凡的稳定将提供一个敏感,选择性和方便的方法临床检测癌细胞。

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