Issue 15, 2023

Modelling network formation in folded protein hydrogels by cluster aggregation kinetics

Abstract

Globular folded protein-based hydrogels are becoming increasingly attractive due to their specific biological functionality, as well as their responsiveness to stimuli. By modelling folded proteins as colloids, there are rich opportunities to explore network formation mechanisms in protein hydrogels that negate the need for computationally expensive simulations which capture the full complexity of proteins. Here we present a kinetic lattice-based model which simulates the formation of irreversibly chemically crosslinked, folded protein-based hydrogels. We identify the critical point of gel percolation, explore the range of network regimes covering diffusion-limited to reaction-limited cluster aggregation (DLCA and RLCA, respectively) network formation mechanisms and predict the final network structure, fractal dimensions and final gel porosity. We reveal a crossover between DLCA and RLCA mechanisms as a function of protein volume fraction and show how the final network structure is governed by the structure at the percolation point, regardless of the broad variation of non-percolating cluster masses observed across all systems. An analysis of the pore size distribution in the final network structures reveals that, approaching RLCA, gels have larger maximal pores than the DLCA counterparts for both volume fractions studied. This general kinetic model and the analysis tools generate predictions of network structure and concurrent porosity over a broad range of experimentally controllable parameters that are consistent with current expectations and understanding of experimental results.

Graphical abstract: Modelling network formation in folded protein hydrogels by cluster aggregation kinetics

Supplementary files

Article information

Article type
Paper
Submitted
26 Jan 2023
Accepted
17 Mar 2023
First published
20 Mar 2023
This article is Open Access
Creative Commons BY license

Soft Matter, 2023,19, 2780-2791

Modelling network formation in folded protein hydrogels by cluster aggregation kinetics

K. R. Cook, D. Head and L. Dougan, Soft Matter, 2023, 19, 2780 DOI: 10.1039/D3SM00111C

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further permissions from the RSC, provided that the correct acknowledgement is given.

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