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利用纳米功能化表面在电容免疫传感器中对 HIV-1 p24 抗原进行超灵敏检测。

Ultrasensitive detection of HIV-1 p24 antigen using nanofunctionalized surfaces in a capacitive immunosensor.

出版信息

Anal Chem. 2010 Oct 15;82(20):8406-11. doi: 10.1021/ac102144a.

Abstract

The HIV-1 capsid protein, p24 antigen, is of considerable diagnostic interest because following HIV exposure it is detectable several days earlier than host-generated HIV antibodies (which are the target of almost all current tests used in the field) and can be used to design very sensitive assays without the need for PCR. Here, we present an ultrasensitive capacitive immunosensor that is capable of detecting subattogram per milliliter concentrations of p24 antigen, which to our knowledge is the lowest level of detection ever reported. Dilution studies using p24-spiked human plasma samples indicate that the immunosensor is robust against the interfering effects of a complex biological matrix. Moreover, the capacitive immunosensor assay is rapid (<20 min), label-free, and generates data in real-time, with a portable format in development. Additional optimization of the capture agents and/or surface chemistries may further improve performance, highlighting the potential of this platform to serve as a diagnostic tool for early detection of HIV in field settings.

摘要

HIV-1 衣壳蛋白 p24 抗原具有重要的诊断意义,因为在 HIV 暴露后,它比宿主产生的 HIV 抗体(几乎是目前在该领域使用的所有检测方法的目标)更早被检测到,并且可以在无需 PCR 的情况下用于设计非常敏感的检测方法。在这里,我们提出了一种超灵敏的电容式免疫传感器,能够检测到亚微微克/毫升浓度的 p24 抗原,据我们所知,这是迄今为止报道的最低检测水平。使用 p24 加标人血浆样本进行的稀释研究表明,该免疫传感器能够抵抗复杂生物基质的干扰影响。此外,电容式免疫传感器检测法快速(<20 分钟)、无需标记且实时生成数据,同时正在开发便携式格式。进一步优化捕获剂和/或表面化学可能会进一步提高性能,这凸显了该平台作为现场环境中 HIV 早期检测的诊断工具的潜力。

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