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首页> 外文期刊>Journal of Interdisciplinary Nanomedicine >Electrochemical impedence spectroscopy enabled CA125 detection; toward early ovarian cancer diagnosis using graphene biosensors
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Electrochemical impedence spectroscopy enabled CA125 detection; toward early ovarian cancer diagnosis using graphene biosensors

机译:电化学阻抗谱可实现CA125检测;石墨烯生物传感器的早期卵巢癌诊断

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摘要

With current diagnostic methods detection of stage 1 or 2 ovarian cancer using CA125 is possible in only 75% of cases. The ability to detect CA125 at lower concentrations could significantly improve such early stage diagnosis. Here, the use of screen‐printed graphene biosensors as a label‐free detection platform for CA125 was evaluated. The sensor was fabricated through deposition of a polyaniline layer via electropolymerisation on to a graphene screen‐printed electrode. The sensor surface was functionalised with anti‐CA125 antibody via covalent cross linking to polyaniline. The fabrication process was characterised through cyclic voltammetry and electrochemical impedance spectroscopy. The limit of detection achieved was 0.923?ng/μL across a dynamic range of 0.92?pg/μL–15.20?ng/μL and represents the most sensitive CA125 detection reported to date. With sensitivity limits at this level, it will now be possible to conduct clinical trials using serum samples collected from early stage ovarian cancer patients and at risk individuals.
机译:使用当前的诊断方法,仅在75%的病例中可以使用CA125检测1或2期卵巢癌。检测低浓度CA125的能力可以显着改善此类早期诊断。在此,评估了丝网印刷石墨烯生物传感器作为CA125的无标签检测平台的使用。该传感器是通过在石墨烯丝网印刷电极上进行电聚合而在聚苯胺层上沉积而成的。传感器表面通过与聚苯胺共价交联的抗CA125抗体功能化。通过循环伏安法和电化学阻抗谱对制备过程进行了表征。在动态范围0.92?pg / μL–15.20?ng /μL的动态范围内,检测限为0.923?ng /μL,代表了迄今为止报道的最敏感的CA125检测。在此水平的灵敏度限制下,现在将有可能使用从早期卵巢癌患者和高危人群中收集的血清样本进行临床试验。

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