Seconds Timescale Synthesis of Highly Stretchable Antibacterial Hydrogel for Skin Wound Closure and Epidermal Strain Sensor

Author:

Bi Yanni1,Sun Mimi12,Zhang Yuanyuan1,Sun Fuxin1,Du Yan3,Wang Jingjuan1,Zhou Ming1,Ma Chong‐Bo1ORCID

Affiliation:

1. Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education National & Local United Engineering Laboratory for Power Batteries Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province Analysis and Testing Center Department of Chemistry Northeast Normal University Changchun Jilin 130024 China

2. Department of Analytical Chemistry Guangxi Vocational & Technical Institute of Industry Guangxi 530001 China

3. State Key Laboratory of Electroanalytical Chemistry Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun Jilin 130022 P. R. China

Abstract

AbstractEffective wound healing is critical for patient care, and the development of novel wound dressing materials that promote healing, prevent infection, and are user‐friendly is of great importance, particularly in the context of point‐of‐care testing (POCT). This study reports the synthesis of a hydrogel material that can be produced in less than 10 s and possesses antibacterial activity against both gram‐negative and gram‐positive microorganisms, as well as the ability to inhibit the growth of eukaryotic cells, such as yeast. The hydrogel is formed wholly based on covalent‐like hydrogen bonding interactions and exhibits excellent mechanical properties, with the ability to stretch up to more than 600% of its initial length. Furthermore, the hydrogel demonstrates ultra‐fast self‐healing properties, with fractures capable of being repaired within 10 s. This hydrogel can promote skin wound healing, with the added advantage of functioning as a strain sensor that generates an electrical signal in response to physical deformation. The strain sensor composed of a rubber shell realizes fast and responsive strain sensing. The findings suggest that this hydrogel has promising applications in the field of POCT for wound care, providing a new avenue for improved patient outcomes.

Funder

Education Department of Jilin Province

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Fundamental Research Funds for the Central Universities

Natural Science Foundation of Jilin Province

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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