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Updated: May 26, 2025

A Simple, Robust, and High Throughput Single Molecule Flow Stretching Assay Implementation for Studying Transport of Molecules Along DNA
Published on: October 1, 2017
Statistical Mechanics Approach to DNA-Driven Droplet Deformation and Adhesion
Nicolas Judd1, Angus McMullen1, Sascha Hilgenfeldt2
1New York University, Center for Soft Matter Research, New York, New York 10003, USA.
Abstract:
Adhesion of soft particles with mobile linkers is of importance in colloidal self-assembly, the binding of vesicles, and tissue organization in biology. Here we derive and experimentally test an equilibrium theory that captures the adhesion of DNA-coated emulsion droplets. Notably, we identify a transition from spherical to deformed droplet binding at a characteristic DNA coverage that depends on molecular properties and surface tension. Fitting the data reveals a weak effective binding strength of 3.7±0.3K_{B}T owing to entropic costs of confinement, crowding, and stretching. Our results pave the path to materials design informed by the choice of molecular-scale parameters.

