Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7229148 | Biosensors and Bioelectronics | 2018 | 23 Pages |
Abstract
Sensitivity amplification strategy by implementing click chemistry in the construction of biosensing interface can efficiently improve the performance of immunosensor. Herein, we developed a sandwich-type amperometric immunosensor for ultrasensitive detection of carbohydrate antigen 24-2 (CA 242) based on pH responsive label-assisted click chemistry triggered sensitivity amplification strategy. The sensitivity of amperometric immunosensor relies on the current response differences (ÎI) caused by per unit concentration target analyte. The pH responsive Cu2+-loaded polydopamine (CuPDA) particles conjugated with detection antibodies were employed as labels, which can release Cu(II) ions by regulating pH. In the presence of ascorbic acid (reductant), Cu(II) ions were reduced to Cu(I) ions. Azide-functionalized double-stranded DNA (dsDNA) as signal enhancer was immobilized on the substrate through Cu+-catalyzed azide/alkyne cycloaddition reaction. With the help of the click reaction, the ÎI caused by target was elevated prominently, resulting in sensitivity amplification of the immunosensor. Under optimal condition, the proposed immunosensor exhibited excellent performance with linear range from 0.0001 to 100â¯Uâ¯mLâ1 and ultralow detection limit of 20.74â¯Î¼Uâ¯mLâ1. This work successfully combines click chemistry with pH-responsive labels in sandwich-type amperometric immunosensor, providing a promising sensitivity amplification strategy to construct immunosensing platform for analysis of other tumor marker.
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Authors
Yun Zheng, Lihua Zhao, Zhanfang Ma,