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将电容测量用作检测方法,用于含抗原的逐层薄膜生物传感。

Using capacitance measurements as the detection method in antigen-containing layer-by-layer films for biosensing.

作者信息

Zucolotto Valtencir, Daghastanli Katia R P, Hayasaka Caio O, Riul Antonio, Ciancaglini Pietro, Oliveira Osvaldo N

机构信息

IFSC, Universidade de São Paulo, CP 369, 13566-590, São Carlos, SP, Brazil.

出版信息

Anal Chem. 2007 Mar 1;79(5):2163-7. doi: 10.1021/ac0616153. Epub 2007 Jan 31.

Abstract

The layer-by-layer technique is employed here to immobilize antigen-containing liposomes, so-called proteoliposomes, onto Au-interdigitated substrates, which are capable of molecular recognition of anti-pasteurellosis antibodies. Detection was carried out using a novel strategy entirely based upon capacitance measurements, and to enhance sensitivity, we combine the response of three different sensing units in a similar procedure used for taste sensors. With the three-electrode array immunoglobulin G (IgG) against pasteurellosis is detected at concentrations as low as nanograms per milliliter. Furthermore, because of the molecular recognition capability, a distinction can be made between specific and nonspecific IgG. The concepts behind the biosensors reported here may have a large impact for clinical tests, as the procedures to detect the antibody take only a few minutes and the biosensors are relatively low cost.

摘要

这里采用层层技术将含抗原的脂质体(即所谓的蛋白脂质体)固定在金叉指电极基底上,该基底能够对抗巴氏杆菌病抗体进行分子识别。检测采用一种完全基于电容测量的新策略,为提高灵敏度,我们按照用于味觉传感器的类似程序,将三个不同传感单元的响应结合起来。利用三电极阵列可检测到低至纳克每毫升浓度的抗巴氏杆菌病免疫球蛋白G(IgG)。此外,由于具有分子识别能力,能够区分特异性和非特异性IgG。本文报道的生物传感器背后的概念可能对临床检测产生重大影响,因为检测抗体的过程只需几分钟,且生物传感器成本相对较低。

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