Author:
Dong Jinhong,Wang Tianyou,Li Haotian,Zhang Jianhua,Zhang Hengjie,Liu Weijie,You Xinru,Gu Zhipeng,Li Yiwen,Chen Xianchun,Fu Qiang
Abstract
AbstractThe development of advanced sustainable biomedical materials with superior biosafety and bioactivity for clinical applications is highly desirable. In the present investigation, biomass-based nanoparticles (NPs) were assembled through the Mannich reaction between the plant polyphenols and the broad-spectrum antibiotic tigecycline (TG). The fabricated NPs with uniform size demonstrated excellent oxidative balance effects, pH-responsive release properties and antibacterial performances. Furthermore, the intracellular and in vivo studies confirmed that the NPs are capable of reducing oxidative damage to cells and significantly repairing tissue injury in mice with peritonitis. This work presents an effective method and idea for constructing biomass-based materials for the treatment of infection-induced diseases.
Graphical Abstract
Funder
the project of National Key R&D Program of China
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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