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首页> 外文期刊>Clinica chimica acta: International journal of clinical chemistry and applied molecular biology >Prostate-specific antigen detection by using a reusable amperometric immunosensor based on reversible binding and leasing of HRP-anti-PSA from phenylboronic acid modified electrode.
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Prostate-specific antigen detection by using a reusable amperometric immunosensor based on reversible binding and leasing of HRP-anti-PSA from phenylboronic acid modified electrode.

机译:通过使用可重复使用的安培免疫传感器进行前列腺特异性抗原检测,该传感器基于可逆结合和从苯硼酸修饰电极租用HRP-anti-PSA。

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BACKGROUND: In recent years, many automated immunoassay analyzers have been developed for accurate diagnosis of various disease states and to improve effective drug administration. Amperometric immunoassay has been increasingly applied to laboratory medicine due to its ease in automation, rapid speed and low detection limits. It is important to develop reusable immunologically-sensitive elements for prostate-specific antigen (PSA) detection. METHODS: The strategy for the immunosensor construction is based on the enzyme-conjugated prostate-specific antibody (HRP-anti-PSA) reversible binding with a self-assembled phenylboronic acid monolayer on gold. RESULTS: After incubating an HRP-anti-PSA modified electrode in a PSA solution, a decrease in the electrocatalytic response of the HRP-anti-PSA modified electrode to the reduction of H(2)O(2) is observed. The photometric activity assays show that this decrease of the electrocatalytic response arises from the formation of immunocomplexes of HRP-conjugated anti-PSA and its antigen, not from the loss of bound HRP-anti-PSA from the electrode surface. Analytical performances and optimal conditions of the described immunosensor are also investigated. Under the optimal conditions, the amperometric immunosensor shows a linear increase of the relative intensity in 2 PSA concentration range from 2 to 15 ng/ml and 15 to 120 ng/ml, respectively. CONCLUSION: This method could be used for rapid analysis of PSA and potentially other antigens.
机译:背景:近年来,已经开发了许多自动免疫分析仪,用于准确诊断各种疾病状态并改善有效的药物管理。安培免疫分析由于其易于自动化,快速和低检测限而越来越多地应用于实验室医学。开发可重复使用的免疫敏感性元件对前列腺特异性抗原(PSA)的检测很重要。方法:构建免疫传感器的策略是基于酶结合的前列腺特异性抗体(HRP-anti-PSA)与金上自组装的苯基硼酸单层的可逆结合。结果:在PSA溶液中孵育HRP-抗PSA修饰电极后,观察到HRP-抗PSA修饰电极对H(2)O(2)还原的电催化响应降低。光度活性试验表明,这种电催化反应的降低是由于HRP结合的抗PSA及其抗原的免疫复合物的形成,而不是电极表面结合的HRP-抗PSA的损失。还研究了所述免疫传感器的分析性能和最佳条件。在最佳条件下,电流型免疫传感器在2 PSA浓度范围分别为2到15 ng / ml和15到120 ng / ml时显示相对强度的线性增加。结论:该方法可用于快速分析PSA和其他潜在抗原。

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