activity
20242026
collaborators

5 papers

physics.bio-ph2026

DNA handles bias force-dependent looping times

Wout Laeremans, Jef Hooyberghs, Wouter G. Ellenbroek

DNA loop formation is a key mechanism in gene regulation, and looping kinetics are sensitive to mechanical tension acting on the DNA. In both single-molecule experiments and biolog…

cond-mat.soft2026

Synthetic design of force-responsive hydrogels with ring-forming catch bonds

Wout Laeremans, Wouter G. Ellenbroek

Catch bonds are interactions whose lifetimes increase under mechanical load, a counterintuitive behaviour that underlies diverse biological processes. Translating this mechanism to…

cond-mat.stat-mech2025

Theoretical Models for Tension-Dependent DNA Looping Time

Wout Laeremans, Wouter G Ellenbroek

The influence of tension on DNA looping has been studied both experimentally and theoretically in the past. However, different theoretical models have yielded different predictions…

cond-mat.stat-mech2024

Polymer dynamics under tension: mean first passage time for looping

Wout Laeremans, Anne Floor den Ouden, Jef Hooyberghs +1

This study deals with polymer looping, an important process in many chemical and biological systems. We investigate basic questions on the looping dynamics of a polymer under tensi…

cond-mat.soft2024

From hydrodynamics to dipolar colloids: modeling complex interactions and self-organization with generalized potentials

T. J. J. M. van Overveld, W. G. Ellenbroek, J. M. Meijer +2

The self-organization of clusters of particles is a fundamental phenomenon across various physical systems, including hydrodynamic and colloidal systems. One example is that of den…