首页> 外文会议>Industry Applications Conference, 2001. Thirty-Sixth IAS Annual Meeting. Conference Record of the 2001 IEEE >Selective detection of bacteria using dielectrophoretic impedance measurement method combined with antigen-antibody reaction
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Selective detection of bacteria using dielectrophoretic impedance measurement method combined with antigen-antibody reaction

机译:使用介电泳阻抗测量方法结合抗原-抗体反应选择性检测细菌

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This paper describes a new selective detection method of microorganisms such as bacteria by using dielectrophoresis together with antigen-antibody reaction. The authors had proposed the dielectrophoretic impedance measurement (DEPIM) method, which realized fast and easy detection of biological cells suspended in aqueous medium. However, highly selective detection of bacteria according to their species or strain, was rather difficult by utilizing only the dielectric property variation according to the cell type. In this paper, the authors propose a selective bacteria detection method using DEPIM combined with antigen-antibody reaction, which is widely used in clinical diagnosis. Two kinds of combinations of DEPIM with immunoassay are tested. In one method, agglutination of bacteria is employed to increase dielectrophoretic force. The other method utilizes antibody molecules immobilized onto the microelectrode surface. It is experimentally confirmed that both methods can leave peculiar bacteria on the electrode surface after preliminary dielectrophoretic enrichment. Furthermore, agglutinated bacteria can be electrically detected by residual increase of the electrode conductance. These findings suggest that target bacteria may be selectively detected from mixture of various bacteria by the improved DEPIM technique.
机译:本文介绍了一种通过介电电泳与抗原抗体反应一起对细菌等微生物进行选择性检测的新方法。作者提出了介电泳阻抗测量(DEPIM)方法,该方法可以快速,轻松地检测悬浮在水性介质中的生物细胞。然而,仅通过利用根据细胞类型的介电特性变化,很难根据细菌的种类或菌株对细菌进行高度选择性的检测。在本文中,作者提出了一种结合DEPIM和抗原抗体反应的选择性细菌检测方法,在临床诊断中得到了广泛的应用。测试了DEPIM与免疫测定的两种组合。在一种方法中,采用细菌凝集来增加介电泳力。另一种方法是利用固定在微电极表面的抗体分子。实验证实,两种方法都可以在初步的介电泳富集后将特殊细菌留在电极表面。此外,可以通过电极电导的残留增加来电检测凝集的细菌。这些发现表明,可以通过改进的DEPIM技术从各种细菌的混合物中选择性地检测目标细菌。

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