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Electrochemiluminescence aptasensor based on bipolar electrode for detection of adenosine in cancer cells

机译:基于双极电极的电化学发光适体传感器检测癌细胞中的腺苷

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摘要

Here we report a novel approach for the detection of adenosine in cancer cells by electrochemiluminescence (ECL) on a wireless indium tin oxide bipolar electrode (BPE). In this approach, ferrocene (Fc) which is labeled on adenosine aptamer is enriched on one pole of the BPE by hybridization with its complementary DNA (ssDNA) and oxidized to Fc~+ under an external voltage of 5.0 V at the two ends of BPE. Then, a reversed external voltage was added on the BPE, making Fc~+ enriched pole as cathode. The presence of Fc~+ promotes the oxidation reaction on the anodic pole of the BPE, resulting in a significant increase of ECL intensity using Ru(bpy)_3~(2+)/tripropylamine (TPA) system as test solution. The presence of target adenosine was reflected by the ECL signal decrease on the anodic pole caused by the target-induced removal of ferrocene-aptamer on the cathodic pole. The decrease of ECL signal was logarithmically linear with the concentration of ATP in a wide range from 1.0 fM to 0.10 μM. This ECL biosensing system could accurately detect the level of adenosine released from cancer cells.
机译:在这里,我们报告了一种通过无线铟锡氧化物双极电极(BPE)上的电化学发光(ECL)检测癌细胞中腺苷的新方法。在这种方法中,腺苷适体上标记的二茂铁(Fc)通过与其互补DNA(ssDNA)杂交而富集在BPE的一个极点上,并在5.0 V的外部电压下在BPE的两端被氧化成Fc〜+ 。然后,将反向的外部电压加到BPE上,使富含Fc +的极作为阴极。 Fc〜+的存在促进了BPE阳极上的氧化反应,使用Ru(bpy)_3〜(2 +)/三丙胺(TPA)系统作为测试溶液,导致ECL强度显着提高。目标腺苷的存在由阳极诱导的阳极上二茂铁-适体的目标诱导去除引起的ECL信号下降所反映。 ECL信号的下降与ATP的浓度在1.0 fM至0.10μM的较宽范围内呈对数线性关系。该ECL生物传感系统可以准确检测从癌细胞释放的腺苷水平。

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