Cao Fengyi, Mei Lin, Zhu Genxing, Song Meng, Zhang Xueli
School of Materials and Chemical Engineering, Zhongyuan University of Technology Zhengzhou 450007 P. R. China
RSC Adv. 2019 Oct 1;9(53):30803-30808. doi: 10.1039/c9ra06130d. eCollection 2019 Sep 26.
Wound infection is a crucial factor that inhibits wound recovery. A feasible measure to solve this problem is using antimicrobial biomaterials to suppress the microbial growth. In this work, an amphipathic antimicrobial peptide (Ac-RKKWFW-NH, PAF26) was investigated to form the antimicrobial hydrogel. Triggered by pH, PAF26 peptide could self-assemble into a hydrogel, and the hydrogel formed was injectable and exhibited shear-thinning ability. Antimicrobial experiments demonstrated that the self-assembled hydrogel had an outstanding antimicrobial ability against pathogenic microbes such as , , and destroying the cell membrane structure. Thus, this study provides a novel method for preparing an injectable antimicrobial peptide hydrogel for antimicrobial therapies.
伤口感染是阻碍伤口愈合的关键因素。解决这一问题的一个可行措施是使用抗菌生物材料来抑制微生物生长。在本研究中,研究了一种两亲性抗菌肽(Ac-RKKWFW-NH₂,PAF26)以形成抗菌水凝胶。在pH触发下,PAF26肽可自组装成水凝胶,形成的水凝胶可注射且具有剪切变稀能力。抗菌实验表明,自组装水凝胶对诸如[此处原文缺失具体微生物名称]等致病微生物具有出色的抗菌能力,可破坏细胞膜结构。因此,本研究为制备用于抗菌治疗的可注射抗菌肽水凝胶提供了一种新方法。