首页> 美国卫生研究院文献>Journal of Zhejiang University. Science. B >Science Letters: Demonstration of a new biosensing concept for immunodiagnostic applications based on change in surface conductance of antibodies after biomolecular interactions
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Science Letters: Demonstration of a new biosensing concept for immunodiagnostic applications based on change in surface conductance of antibodies after biomolecular interactions

机译:科学快报:基于生物分子相互作用后抗体表面电导变化的免疫诊断新生物传感概念的演示

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摘要

We report an important observation that the surface conductivity of antibody layer immobilized on polylysine-coated glass substrate decreases upon the formation of complex with their specific antigens. This change in conductivity has been observed for both monoclonal and polyclonal antibodies. The conductance of monoclonal mouse IgG immobilized on polylysine-coated glass substrate changed from 1.02×10−8−1 to 1.41×10−11−1 at 10 V when complex is formed due to the specific biomolecular interactions with rabbit anti-mouse IgG F(ab′)2. Similar behavior was observed when the same set up was tested in two clinical assays: (1) anti-Leishmania antigen polyclonal antibodies taken from Kala Azar positive patient serum interacting with Leishmania promastigote antigen, and (2) anti-p21 polyclonal antibodies interacting with p21 antigen. The proposed concept can represent a new immunodiagnostic technique and may have wide ranging applications in biosensors and nanobiotechnology too.
机译:我们报告了一个重要的观察结果,即固定在聚赖氨酸涂层的玻璃基板上的抗体层的表面电导率在与它们的特定抗原形成复合物时降低。对于单克隆抗体和多克隆抗体,均已观察到电导率的这种变化。固定在聚赖氨酸涂层玻璃基板上的单克隆小鼠IgG的电导率从1.02×10 -8 Ω -1 变为1.41×10 −11 由于与兔抗小鼠IgG F(ab')2发生特定的生物分子相互作用而形成复合物时,在10 V时Ω −1 。在两个临床试验中测试相同设置时,观察到相似的行为:(1)取自Kala Azar阳性患者血清的抗利什曼原虫抗原多克隆抗体与利什曼原虫前鞭毛体抗原相互作用;以及(2)抗p21多克隆抗体与p21相互作用抗原。提出的概念可以代表一种新的免疫诊断技术,并且在生物传感器和纳米生物技术中也可能具有广泛的应用。

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