The NEOtrap – en route with a new single-molecule technique

Review (2021)
Author(s)

Sonja Schmid (Wageningen University & Research)

Cees Dekker (TU Delft - Applied Sciences, Kavli institute of nanoscience Delft)

Research Group
BN/Cees Dekker Lab
DOI related publication
https://doi.org/10.1016/j.isci.2021.103007 Final published version
More Info
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Publication Year
2021
Language
English
Research Group
BN/Cees Dekker Lab
Journal title
iScience
Issue number
10
Volume number
24
Article number
103007
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274
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Institutional Repository
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Abstract

This paper provides a perspective on potential applications of a new single-molecule technique, viz., the nanopore electro-osmotic trap (NEOtrap). This solid-state nanopore-based method uses locally induced electro-osmosis to form a hydrodynamic trap for single molecules. Ionic current recordings allow one to study an unlabeled protein or nanoparticle of arbitrary charge that can be held in the nanopore's most sensitive region for very long times. After motivating the need for improved single-molecule technologies, we sketch various possible technical extensions and combinations of the NEOtrap. We lay out diverse applications in biosensing, enzymology, protein folding, protein dynamics, fingerprinting of proteins, detecting post-translational modifications, and all that at the level of single proteins – illustrating the unique versatility and potential of the NEOtrap.