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In situ electrochemical synthesis of Ni-capped electrochemiluminescence nanoprobe for ultrasensitive detection of cancer cells

机译:原位电化学合成镍基电化学发光纳米探针用于癌细胞的超灵敏检测

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A facile, novel and in situ electrochemical synthesis of a Ni-capped (NiS@CdS/PANINF) composite electrochemiluminescence (ECL) nanoprobe was developed to fabricate an ECL cytosensor for the ultrasensitive detection of cancer cells. Polyaniline nanofibers (PANINF) films were electropolymerized onto the surface of a bare GCE electrode, and then Ni-capped (NiS@CdS/PANINF) composite nanoprobes were successfully prepared by the in situ electrochemical approach using PANINF as a template. The ECL performance of the proposed nanoprobe showed a a??5-fold enhancement compared to pure CdS NCs, which were synthesized in an aqueous solution system. Further, aptamer was modified to the electrode surface to fabricate an ECL cytosensor, which was identified as a recognition element of MCF-7 cancer cells. The fabricated ECL cytosensor achieved a wide dynamic range from 12 to 1.2 ?— 106 cells per mL for the detection of MCF-7 cancer cells, with a low detection limit of 8 cells per mL (S/N = 3). This ECL cytosensor exhibited not only high sensitivity, selectivity and stability but also showed a novel strategy for developing ECL biosensor systems. In addition, it could be extended to the highly sensitive detection of other biological samples.
机译:开发了一种简便,新颖且原位的Ni封端(NiS @ CdS / PANINF)复合电化学发光(ECL)纳米探针的电化学合成方法,以制造用于癌细胞超灵敏检测的ECL细胞传感器。将聚苯胺纳米纤维(PANINF)薄膜电聚合到裸露的GCE电极的表面上,然后以PANINF为模板,通过原位电化学方法成功制备了Ni封端的(NiS @ CdS / PANINF)复合纳米探针。与在水溶液系统中合成的纯CdS NCs相比,拟议的纳米探针的ECL性能提高了Δε5倍。此外,将适体修饰到电极表面以制造ECL细胞传感器,该传感器被确定为MCF-7癌细胞的识别元件。所制造的ECL细胞传感器可实现从每毫升12至1.2?-106个细胞的宽动态范围,可检测MCF-7癌细胞,而检测限仅为每毫升8个细胞(S / N = 3)。这种ECL细胞传感器不仅显示出高灵敏度,选择性和稳定性,而且还展示了开发ECL生物传感器系统的新策略。另外,它可以扩展到其他生物样品的高灵敏度检测。

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