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Enhanced biosensor performance using an avidin-biotin bridge for antibody immobilization

机译:使用Avidin-Biotin桥用于抗体固定化的增强生物传感器性能

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Maintaining antibody function after immobilization is critical to the performance of a biosensor. The conventional methods to immobilize antibodies onto surfaces are via covalent attachment using a crosslinker or by adsorption. Often, these methods of immobilization result in partial denaturation of the antibody and conformational changes leading to a reduced activity of the antibody. In this paper, we report on the immobilization of antibodies onto the surface of an optical fiber through an avidin-biotin bridge for the detection of ricin, ovalbumin, and Bacillus globigii (Bg). The assays are performed in a sandwich format. First, a capture antibody is immobilized, followed by the addition of the analyte. Finally, a fluorophore-labeled antibody is added for the specific detection of the analyte. The evanescent wave-induced fluorescence is coupled back through the same fiber to be detected using a photodiode. In all cases, we observe an improved performance of the biosensor, i.e., lower limit of detection and wider linear dynamic range, for the assays in which the antibody is immobilized via avidin-biotin bridges compared to covalent attachment method.
机译:固定后保持抗体功能对于生物传感器的性能至关重要。将抗体固定到表面上的常规方法通过共价连接使用交联剂或通过吸附。通常,这些固定化方法导致抗体的部分变性,并构象变化导致抗体的减少活性。在本文中,我们通过抗霉素 - 生物素桥将抗体固定到光纤表面上,用于检测蓖麻素,卵磷蛋白和芽孢杆菌(BG)。测定以夹心形式进行。首先,将捕获抗体固定,然后加入分析物。最后,添加荧光团标记的抗体用于对分析物的特异性检测。蒸发波诱导的荧光通过使用光电二极管通过相同的纤维耦合回来。在所有情况下,我们观察到生物传感器,即检测和更宽的线性动态范围下限的改善性能,用于将抗体通过抗生物素蛋白 - 生物素网状桥固定的测定,与共价附着方法相比。

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