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Updated: Jan 7, 2026

Monitoring Conformational Dynamics of Single Unmodified Proteins using Plasmonic Nanotweezers
Published on: March 21, 2025
Nanomosaic network for the detection of proteins without direct electrical contact
Jean Gamby1, Jean-Pierre Abid, Bernard Tribollet
1Laboratoire des Interfaces et Systèmes Electrochimiques, UPR15 du CNRS, niversité Pierre et Marie Curie, Paris VI, 75252 Paris, France. gamby@ccr.jussieu.fr
Abstract:
A nanomosaic network of metallic nanoparticles for the detection of ultralow concentrations of proteins is reported, which uses two planar microelectrodes embedded in a microchip that permit generation of capacitive coupling to the nanomosaic system without the need for direct electrical contact with the channel. By tailoring the microchannel surface using a sandwich configuration of polyethylene terephthalate/gold nanoparticles/poly(L-lysine), the surface charge can be modified following biomolecular interactions and monitored using a noncontact admittance technique. This nanodevice system behaves like a tunable capacitor and can be employed for the detection of any kind of molecule. The femtomolar detection of an anionic protein, such as beta-lactoglobulin in phosphate-buffered saline medium, is taken as an example.

