Department of Chemistry, University of Oxford, South Parks Road, Oxford OX1 3QZ, United Kingdom.
Anal Chem. 2020 Mar 3;92(5):3508-3511. doi: 10.1021/acs.analchem.9b05633. Epub 2020 Feb 20.
Methods that enable the sensitive and label-free detection of protein biomarkers are well-positioned to make potentially significant contributions to diagnostics and derived personalized healthcare. In support of this goal, a myriad of (electrochemical) methodologies have been developed; recently, electrochemical capacitance spectroscopy emerged as an impedance-derived approach which, in employing surface-confined redox-transducers, circumvents problems associated with the use of solution-phase redox-probes. Herein, we expand this scope by utilizing phytic acid-doped polyaniline as a novel redox-charging polymer support enabling the reagentless assaying of C-reactive protein in serum with good sensitivity. The construction of the sensory interface via electropolymerization allows facile tuning of the surface coverage and redox (capacitive) properties of the polymers, which, in turn, modulate both assay selectivity, fouling, and sensitivity. Significantly, this methodology is readily extendable to a wide range of electrode materials and analytes.
方法,使敏感和无标记的蛋白质生物标志物的检测是有潜力的,为诊断和衍生的个性化医疗做出重大贡献。为了支持这一目标,已经开发了无数的(电化学)方法;最近,电化学电容光谱学作为一种基于阻抗的方法出现,它采用表面限制的氧化还原转导体,避免了使用溶液相氧化还原探针相关的问题。在这里,我们通过利用植酸掺杂的聚苯胺作为一种新型的氧化还原充电聚合物支持物,扩展了这一范围,该聚合物支持物能够在血清中无试剂测定 C 反应蛋白,具有良好的灵敏度。通过电化学聚合构建传感界面允许聚合物的表面覆盖率和氧化还原(电容)性质的容易调节,这反过来又调节了分析物的选择性、污垢和灵敏度。重要的是,这种方法很容易扩展到广泛的电极材料和分析物。