A Novel Multifunctional Crosslinking PVA/CMCS Hydrogel Containing Cyclic Peptide Actinomycin X2 and PA@Fe with Excellent Antibacterial and Commendable Mechanical Properties

生物相容性 自愈水凝胶 化学 壳聚糖 聚乙烯醇 抗菌活性 抗菌剂 核化学 高分子化学 有机化学 细菌 生物 遗传学
作者
Fengyun Chen,Ansar Javeed,Qiuyu Zeng,Quan Zhang,Bingnan Han
出处
期刊:Chemistry & Biodiversity [Wiley]
卷期号:20 (8): e202300831-e202300831 被引量:10
标识
DOI:10.1002/cbdv.202300831
摘要

Abstract Bacterial infected environments and resulting bacterial infections have been threatening the human health globally. Due to increased bacterial resistance caused by improper and excessive use of antibiotics, antibacterial biomaterials are being developed as alternatives to antibiotics in some cases. Herein, an advanced multifunctional hydrogel with excellent antibacterial properties, enhanced mechanical properties, biocompatibility and self‐healing performance, was designed through freezing‐thawing method. This hydrogel network is composed of polyvinyl alcohol (PVA), carboxymethyl chitosan (CMCS), protocatechualdehyde (PA), ferric iron (Fe) and an antimicrobial cyclic peptide actinomycin X2 (Ac.X2). The double dynamic bonds among protocatechualdehyde (PA), ferric iron (Fe) and carboxymethyl chitosan containing coordinate bond (catechol‐Fe) as well as dynamic Schiff base bonds and hydrogen bonds endowed the hydrogel with enhanced mechanical properties. Successful formation of hydrogel was confirmed through ATR‐IR and XRD, and structural evaluation through SEM analysis, whereas mechanical properties were tested with electromechanical universal testing machine. The resulting PVA/CMCS/Ac.X2/PA@Fe (PCXPA) hydrogel has favorable biocompatibility and excellent broad‐spectrum antimicrobial activity against both S. aureus (95.3 %) and E. coli (90.2 %) compared with free‐soluble Ac.X2, which exhibited subpar performance against E. coli reported in our previous studies. This work provides a new insight on preparing multifunctional hydrogels containing antimicrobial peptides as antibacterial material.
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