Cao Yufei, Yin Juanjuan, Shi Yuting, Cheng Ju, Fang Yu, Huang Congshu, Yu Wenwen, Liu Mingsheng, Yang Zheng, Zhou Haicun, Liu Hongbin, Wang Jianrong, Zhao Guanghui
State Key Laboratory of Applied Organic Chemistry, Institute of Biochemical Engineering & Environmental Technology, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, PR China.
School of Basic Medical Science, Lanzhou University, Lanzhou 730000, PR China.
Int J Biol Macromol. 2022 Nov 1;220:1177-1187. doi: 10.1016/j.ijbiomac.2022.08.152. Epub 2022 Aug 27.
In this work, a positively charged chitosan-grafted-polyarginine (CS-N-PArg) as the macro-molecular NO donor, and a negatively charged acetalated starch (AcSt-O-PAsp) as a glucose donor, have been synthesized. To achieve the multi-enzymatic cascade system for local generation of self-supply glucose to increase the HO concentration for the subsequent oxidization of L-Arg into NO, the designed positively charged CS-N-PArg, negatively charged AcSt-O-PAsp, glucoamylase (GA) and glucose oxidase (GOx) are absorbed and assembled in the pore of the gelatin sponge via electrostatic interaction to establish a smart antibacterial dressings (CS/St + GOx/GA). Once stimulated by Escherichia coli (E. coli)-infected wounds (a slightly acidic environment), the cascade reaction system can sequentially induce to generate glucose, HO and NO, which exhibits a meaningful alternative idea for a high-performance antibacterial therapy.
在这项工作中,已合成了带正电荷的壳聚糖接枝聚精氨酸(CS-N-PArg)作为大分子一氧化氮供体,以及带负电荷的缩醛化淀粉(AcSt-O-PAsp)作为葡萄糖供体。为实现用于局部产生自我供应葡萄糖以提高过氧化氢(HO)浓度从而将L-精氨酸随后氧化为一氧化氮的多酶级联系统,设计的带正电荷的CS-N-PArg、带负电荷的AcSt-O-PAsp、葡糖淀粉酶(GA)和葡萄糖氧化酶(GOx)通过静电相互作用被吸附并组装在明胶海绵的孔隙中,以建立一种智能抗菌敷料(CS/St + GOx/GA)。一旦受到大肠杆菌感染伤口(微酸性环境)的刺激,级联反应系统可依次诱导产生葡萄糖、HO和一氧化氮,这为高性能抗菌治疗展现了一个有意义的替代方案。