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首页> 外文期刊>RSC Advances >Innovative gold-free carbon nanotube/chitosan-based competitive immunosensor for determination of HIV-related p24 capsid protein in serum
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Innovative gold-free carbon nanotube/chitosan-based competitive immunosensor for determination of HIV-related p24 capsid protein in serum

机译:创新的无金碳纳米管/壳聚糖竞争性免疫传感器测定血清中与HIV相关的p24衣壳蛋白

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In the past decade, the need for simple, rapid, sensitive, specific and inexpensive screening methods for diagnosis of HIV infection has led to a focus on the HIV1-related capsid protein p24. In this work, the first competitive electrochemical immunosensor for the detection of p24 in untreated human serum was developed as a simple, easy-to-use and promising tool for serum screening for early diagnosis of HIV infection. The immunodevice was implemented on disposable gold-free single-walled carbon nanotube-functionalized screen-printed electrodes. The competitive sensor is based on the immobilization of the target protein on the electrode surface using a chitosan/glutaraldehyde crosslinking system, able to ensure, under mild conditions, a robust immobilization and a proper exposition of p24 for interaction with a mouse anti-p24 IgG1. The immunosensor setup as well as the assay's experimental conditions were then optimized, achieving a wide linear detection range of 10 pM to 1 nM, with a low detection limit of 2 pM in human serum. The good performance, also in terms of selectivity, trueness and precision, coupled with the advantages of an easy preparation compared to other methods requiring very complex conjugation procedures between bioreceptors and expensive nanostructures, makes the immunosensor a powerful diagnostic tool, valuable for implementation of large-scale screening programs for early diagnosis of seropositivity.
机译:在过去的十年中,对用于诊断HIV感染的简单,快速,灵敏,特异且廉价的筛选方法的需求导致人们开始关注与HIV1相关的衣壳蛋白p24。在这项工作中,开发了第一个竞争性电化学免疫传感器,用于检测未经处理的人血清中的p24,这是一种简单,易于使用且很有前途的工具,可用于血清筛查以早期诊断HIV感染。该免疫装置在一次性无金单壁碳纳米管功能化丝网印刷电极上实现。竞争性传感器基于使用壳聚糖/戊二醛交联系统将靶蛋白固定在电极表面的能力,能够确保在温和条件下的牢固固定以及与小鼠抗p24 IgG1相互作用的p24适当暴露。然后对免疫传感器的设置以及测定的实验条件进行了优化,实现了从10 pM到1 nM的宽线性检测范围,而在人血清中的检测限仅为2 pM。与在生物受体和昂贵的纳米结构之间需要非常复杂的缀合程序的其他方法相比,良好的性能(在选择性,真实性和精密度方面),加上易于制备的优点,使免疫传感器成为强大的诊断工具,对于大规模实施具有重要价值早期诊断血清阳性的大规模筛查计划。

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