Published in

MDPI, International Journal of Molecular Sciences, 6(23), p. 3032, 2022

DOI: 10.3390/ijms23063032

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Tuning Strain Stiffening of Protein Hydrogels by Charge Modification

Journal article published in 2022 by Jie Gu, Yu Guo, Yiran Li, Juan Wang, Wei Wang, Yi Cao ORCID, Bin Xue ORCID
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

Strain-stiffening properties derived from biological tissue have been widely observed in biological hydrogels and are essential in mimicking natural tissues. Although strain-stiffening has been studied in various protein-based hydrogels, effective approaches for tuning the strain-stiffening properties of protein hydrogels have rarely been explored. Here, we demonstrated a new method to tune the strain-stiffening amplitudes of protein hydrogels. By adjusting the surface charge of proteins inside the hydrogel using negatively/positively charged molecules, the strain-stiffening amplitudes could be quantitively regulated. The strain-stiffening of the protein hydrogels could even be enhanced 5-fold under high deformations, while the bulk property, recovery ability and biocompatibility remained almost unchanged. The tuning of strain-stiffening amplitudes using different molecules or in different protein hydrogels was further proved to be feasible. We anticipate that surface charge adjustment of proteins in hydrogels represents a general principle to tune the strain-stiffening property and can find wide applications in regulating the mechanical behaviors of protein-based hydrogels.