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A simple and rapid electrochemical strategy for non-invasive, sensitive and specific detection of cancerous cell

机译:一种简单快速的电化学方法,用于无创,敏感和特异性地检测癌细胞

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摘要

Developing non-invasive, sensitive and specific sensing strategies for cancerous cell detection with simple and low cost instrumentations provide great advantages in cancer research and early diagnosis of diseases. In the present work, gold nanoparticles (Au NPs) functionalized with recognition components (folic acid) and signal indicator (ferrocene) was designed to fabricate electrochemical cytosensor. The Au NPs can not only accelerate electron transfer between signal indicator and the underlying electrode but also accumulate more ferrocene on the cytosensor surface to magnify signal for improving detection sensitivity. The surface-tethered folic acid plays a key role in specific binding folate receptor-riched HeLa cells on the cytosensor surface, resulting in corresponding current signal change measured by differential pulse voltammetry method. A wide detection range from 10 to 106 cells/mL with a detection limit as low as 10 cells/mL for cancerous cells was reached in the presence of a large amount of normal ones with fast differential pulse voltammetry measurement. Detection of the captured cells can be finished within 1 min. The developed strategy provides a new way for operationally simple, rapid, sensitive and specific detection of cancerous cells.
机译:利用简单和低成本的仪器开发用于癌细胞检测的非侵入性,灵敏和特异的传感策略,在癌症研究和疾病的早期诊断中具有很大的优势。在目前的工作中,设计有识别成分(叶酸)和信号指示剂(二茂铁)功能化的金纳米颗粒(Au NPs),以制造电化学细胞传感器。 Au NPs不仅可以加速信号指示剂和下层电极之间的电子转移,而且可以在细胞传感器表面积聚更多的二茂铁来放大信号,从而提高检测灵敏度。表面束缚的叶酸在细胞传感器表面上特异性结合富含叶酸受体的HeLa细胞中起着关键作用,导致通过差分脉冲伏安法测量的相应电流信号变化。在大量具有快速差示脉冲伏安法测量的正常细胞存在的情况下,癌细胞的检测范围从10到106个细胞/毫升,检测限低至10个细胞/毫升。捕获细胞的检测可以在1分钟内完成。所开发的策略为癌细胞的操作简单,快速,灵敏和特异性检测提供了新途径。

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