Issue 34, 2023

Swelling characteristics of DNA polymerization gels

Abstract

The development of biomolecular stimuli-responsive hydrogels is important for biomimetic structures, soft robots, tissue engineering, and drug delivery. DNA polymerization gels are a new class of soft materials composed of polymer gel backbones with DNA duplex crosslinks that can be swollen by sequential strand displacement using hairpin-shaped DNA strands. The extensive swelling can be tuned using physical parameters such as salt concentration and biomolecule design. Previously, DNA polymerization gels have been used to create shape-changing gel automata with a large design space and high programmability. Here we systematically investigate how the swelling response of DNA polymerization gels can be tuned by adjusting the design and concentration of DNA crosslinks in the hydrogels or DNA hairpin triggers, and the ionic strength of the solution in which swelling takes place. We also explore the effect hydrogel size and shape have on the swelling response. Tuning these variables can alter the swelling rate and extent across a broad range and provide a quantitative connection between biochemical reactions and macroscopic material behaviour.

Graphical abstract: Swelling characteristics of DNA polymerization gels

Supplementary files

Article information

Article type
Paper
Submitted
13 Mar 2023
Accepted
02 Aug 2023
First published
09 Aug 2023

Soft Matter, 2023,19, 6525-6534

Author version available

Swelling characteristics of DNA polymerization gels

J. Fern, R. Shi, Y. Liu, Y. Xiong, D. H. Gracias and R. Schulman, Soft Matter, 2023, 19, 6525 DOI: 10.1039/D3SM00321C

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