Competitive amperometric immunosensor for determination of p53 protein in urine with carbon nanotubes/gold nanoparticles screen-printed electrodes: A potential rapid and noninvasive screening tool for early diagnosis of urinary tract carcinoma
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Competitive amperometric immunosensor for determination of p53 protein in urine with carbon nanotubes/gold nanoparticles screen-printed electrodes: A potential rapid and noninvasive screening tool for early diagnosis of urinary tract carcinoma

机译:具有碳纳米管/金纳米颗粒丝网印刷电极尿液中尿液中P53蛋白的竞争性血管传感器:用于早期诊断尿路癌的潜在快速和无侵入性筛查工具

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AbstractSince p53 protein has become recognized biomarker for both diagnostic and therapeutic purposes in oncological diseases with particular relevance for bladder cancer, it is highly desirable to search for a novel sensing tool for detecting the patient's p53 level at the early stage. Here we report the first study on the development and validation of a novel disposable competitive amperometric immunosensor for determination of p53 protein at subnanomolar levels, based on p53 immobilization on gold nanoparticles/carbon nanotubes modified screen-printed carbon electrodes. The assay protocol requires the use of single anti-p53 mouse monoclonal antibody (DO-7 clone), able to recognize both wild-type and mutant p53. The developed immunosensor as well as the protocol of the electrochemical immunoassay were optimized by means of an experimental design procedure to assess the suitability of the device to be validated and applied for the determination of p53 in untreated and undiluted urine samples. It was found that the developed competitive immunodevice was able to achieve wide linear range detection of wild-type p53 from 20 pM to 10?nM with a low detection limit of 14 pM in synthetic urine samples, suggesting the sensor's capability of working in a complex sample matrix. The excellent performance results also in terms of selectivity, trueness and precision, coupled with the advantages of an easy preparation and low-cost assay in contrast to other methods which require very complex, time-consuming and costly nanostructured architectures, makes the developed competitive immunosensor an analytically robust diagnostic tool, valuable for implementation of screening and follow-up programs in patients with urologic malignancies.Graphical abstractDisplay OmittedHighlights?First competitive amperometric immunosensor for determination of p53 in urine.?High selectivity, trueness and precision associated to easy preparation and low-cost.?Performance comparable to high-cost sensors based on complex nanostructured architectures.?Diagnostic tool valuable for screening and follow-up programs in urologic malignancies.]]>
机译:<![CDATA [ 抽象 由于P53蛋白已成​​为肿瘤疾病诊断和治疗目的的公认生物标志物,具有特别相关的膀胱癌,非常希望寻找一种用于在早期检测患者P53水平的新型感测工具。在这里,我们报告了对新型一次性竞争流感免疫传感器的开发和验证的第一次研究,用于测定亚甲醛水平下的p53蛋白,基于P53固定在金纳米粒子/碳纳米管改性的丝网印刷碳电极上。测定方案需要使用单一的抗P53小鼠单克隆抗体(DO-7克隆),能够识别野生型和突变P53。通过实验设计方法优化了开发的免疫传感器以及电化学免疫测定的方案,以评估装置的适用性验证并施用于未经处理的和未稀释的尿液样品中的p53。结果发现,发达的竞争性免疫检测能够在合成尿液样本中的14点低至10μm,从20μm到10μm,野生型p53的宽线性范围检测。在合成尿液样本中的14点低,表明传感器在复杂的工作能力样品矩阵。优异的性能结果也在选择性,改革和精度方面,与需要非常复杂,耗时和昂贵的纳米结构架构的其他方法相反,与易于制备和低成本测定的优点相结合,使得发达的竞争性免疫传感器具有显影的竞争性免疫传感器一种分析稳健的诊断工具,对泌尿病患者的筛选和后续程序的实施有价值。 图形抽象 省略显示 亮点 < ce:simple-para id =“abspara0020”视图=“全部”> 尿液中P53的第一个竞争安培免疫传感器。 高选择性,改革和精度与易于准备和低成本相关。 性能可比基于复杂纳米结构架构的高成本传感器。 诊断工具有助于屏蔽和后续节目的泌尿科和后续程序。 ]]>

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