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A sandcastle worm-inspired strategy to functionalize wet hydrogels

Engineering and Technology

A sandcastle worm-inspired strategy to functionalize wet hydrogels

D. Zhang, J. Liu, et al.

Discover a groundbreaking one-step strategy for functionalizing wet hydrogels, inspired by the remarkable adhesive properties of sandcastle worms. This innovative approach employs a versatile tripeptide to enhance hydrogels with desirable properties like antimicrobial activity and wound repair capabilities. This research, conducted by Donghui Zhang, Jingjing Liu, Qi Chen, Weinan Jiang, Yibing Wang, Jiayang Xie, Kaiqian Ma, Chao Shi, Haodong Zhang, Minzhang Chen, Jianglin Wan, Pengcheng Ma, Jingcheng Zou, Wenjing Zhang, Feng Zhou, and Runhui Liu, opens new doors for hydrogel modification.... show more
Abstract
Hydrogels have been extensively used in many fields. Current synthesis of functional hydrogels requires incorporation of functional molecules either before or during gelation via the pre-organized reactive site along the polymer chains within hydrogels, which is tedious for polymer synthesis and not flexible for different types of hydrogels. Inspired by sandcastle worm, we develop a simple one-step strategy to functionalize wet hydrogels using molecules bearing an adhesive dibutylamine-DOPA-lysine-DOPA tripeptide. This tripeptide can be easily modified with various functional groups to initiate diverse types of polymerizations and provide functional polymers with a terminal adhesive tripeptide. Such functional molecules enable direct modification of wet hydrogels to acquire biological functions such as antimicrobial, cell adhesion and wound repair. The strategy has a tunable functionalization degree and a stable attachment of functional molecules, which provides a tool for direct and convenient modification of wet hydrogels to provide them with diverse functions and applications.
Publisher
Nature Communications
Published On
Nov 03, 2021
Authors
Donghui Zhang, Jingjing Liu, Qi Chen, Weinan Jiang, Yibing Wang, Jiayang Xie, Kaiqian Ma, Chao Shi, Haodong Zhang, Minzhang Chen, Jianglin Wan, Pengcheng Ma, Jingcheng Zou, Wenjing Zhang, Feng Zhou, Runhui Liu
Tags
hydrogels
functionalization
adhesive properties
antimicrobial
wound repair
polymerizations
tripeptide
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