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Capillary-Based Displacement Flow Immunosensor

机译:基于毛细管的位移流免疫传感器

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We report on the preparation of a novel capillary flow immunosensor for 2,4,6-trinitrotoluene (TNT). Anti-TNT antibody is immobilized onto the silanized inner walls of an 800-μm-i.d. glass capillary using a heterobifunctional crosslinker, followed by saturating the capillary with fluorophore-labeled antigen. To perform the assay, an aliquot of TNT solution is injected into the capillary. TNT competes for the binding pocket of the fluorophore-labeled antigen, which is detected downstream. We have demonstrated that the sensitivity of the capillary immunosensor is improved by at least 2 orders of magnitude compared to that of conventional packed-column or membrane-based displacement flow immunosensors. The limit of detection (S/N > 3) for TNT using the capillary immunosensor is 15 pg/mL (7 fmol), and the linear dynamic range is 15 pg/mL (7 fmol),and assay can be performed in less than 3 min. During 15 injections of 100 ng/mL TNT solution, the signal reproducibility (RSD)was maintained to within 4%.
机译:我们报告了一种新型的2,4,6-三硝基甲苯(TNT)的毛细管流免疫传感器的制备。将抗TNT抗体固定在800-μm-i.d的硅烷化内壁上。使用异双功能交联剂的玻璃毛细管,然后用荧光团标记的抗原使毛细管饱和。为了进行测定,将等分的TNT溶液注入毛细管中。 TNT竞争在下游检测到的荧光团标记抗原的结合口袋。我们已经证明,与常规的填充柱或基于膜的置换流免疫传感器相比,毛细管免疫传感器的灵敏度至少提高了2个数量级。使用毛细管免疫传感器对TNT的检出限(S / N> 3)为15 pg / mL(7 fmol),线性动态范围为15 pg / mL(7 fmol),并且可以在小于3分钟在15次100 ng / mL TNT溶液的注射过程中,信号重现性(RSD)保持在4%以内。

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