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Updated: Jun 4, 2026

High-Speed Atomic Force Microscopy Imaging of DNA Three-Point-Star Motif Self Assembly Using Photothermal Off-Resonance Tapping
Published on: March 22, 2024
Pressure-driven DNA in nanogroove arrays: complex dynamics leads to length- and topology-dependent separation
Morten Bo Mikkelsen1, Walter Reisner, Henrik Flyvbjerg
1DTU Nanotech, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
Abstract:
The motion of linear and circular DNA molecules is studied under pressure driven buffer flow in a 50 nm slit channel with arrays of transverse 150 nm deep nanogrooves. Transport occurs through two states of propagation unique to this nanogroove geometry, a slow, stepwise groove-to-groove translation called the "sidewinder" and a fast, continuous tumbling across the grooves called the "tumbleweed". Dynamical transitions between the two states are observed at fixed buffer velocity. Molecules exhibit size- and topology-dependent velocities.

