Author:
Liu Qiqi,Zhang Ying,Huang Jingkai,Xu Zhourui,Li Xiang,Yang Jingyu,Huang Haoqiang,Tang Shiqi,Chai Yujuan,Lin Jinbo,Yang Chengbin,Liu Jia,Lin Suxia
Abstract
AbstractThe colonization of bacterial pathogens is a major concern in wound infection and becoming a public health issue. Herein, a core–shell structured Ag@MSN (silver core embedded with mesoporous silica, AM)-based nanoplatform was elaborately fabricated to co-load ciprofloxacin (CFL) and tumor necrosis factor-α (TNF-α) small interfering RNA (siTNF-α) (AMPC@siTNF-α) for treating the bacterial-infected wound. The growth of bacterial pathogens was mostly inhibited by released silver ions (Ag+) and CFL from AMPC@siTNF-α. Meanwhile, the loaded siTNF-α was internalized by macrophage cells, which silenced the expression of TNF-α (a pro-inflammatory cytokine) in macrophage cells and accelerated the wound healing process by reducing inflammation response. In the in vivo wound model, the Escherichia coli (E. coli)-infected wound in mice almost completely disappeared after treatment with AMPC@siTNF-α, and no suppuration symptom was observed during the course of the treatment. Importantly, this nanoplatform had negligible side effects both in vitro and in vivo. Taken together, this study strongly demonstrates the promising potential of AMPC@siTNF-α as a synergistic therapeutic agent for clinical wound infections.
Graphical Abstract
Funder
the Natural Science Foundation of Guangdong Province
the University Stable Support Research Funding of Shenzhen
Start-up Grant from Shenzhen University
National Natural Science Foundation of China
the Shenzhen Science and Technology Innovation Commission
the Longgang Medical and Health Science and Technology Project
Publisher
Springer Science and Business Media LLC
Subject
Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering
Cited by
31 articles.
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