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Ultrafast Biomarker Quantification through Reagentless Capacitive Kinetics.

Shaoyu KangMohamed SharafeldinSophie C PatrickXuanxiao ChenJason J Davis
Published in: Analytical chemistry (2023)
We introduce a facile assessment of binding kinetics at bioreceptive redox-active interfaces as a means of quantifying target proteins. This is achieved by monitoring the redox capacitance ( C r ) of a receptor-modified conductive polymer interface under continuous flow. Exemplified with the quantification of C-reactive protein (CRP), capacitance analyses resolve both the association and dissociation regimes in real-time. Significantly, the rate of electrochemical signal change within the association regime is a sensitive function of target concentration, enabling marker assaying down to picomolar levels, comparable to end-point assays, in 15 s. This reagentless proof-of-principle methodology is envisioned to be widely applicable to the facile quantification of a range of other pertinent, clinically relevant targets.
Keyphrases
  • electron transfer
  • reduced graphene oxide
  • quantum dots
  • gold nanoparticles
  • highly efficient
  • high throughput
  • ionic liquid
  • liquid chromatography
  • tandem mass spectrometry
  • simultaneous determination