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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/21856
Title: Self-redox reaction driven in situ formation of Cu2O/Ti3C2Tx nanosheets boost the photocatalytic eradication of multi-drug resistant bacteria from infected wound
Authors: Hsu, Ya-Ju
Nain, Amit
Lin, Yu-Feng
Tseng, Yu-Ting
Li, Yu-Jia
Sangili, Arumugam
Srivastava, Pavitra
Yu, Hui-Ling
Huang, Yu-Fen
Huang, Chih-Ching 
Chang, Huan-Tsung
Keywords: NANOPARTICLES;MXENE;ANTIBIOTICS;REDUCTION;TIO2;2D
Issue Date: 19-May-2022
Publisher: BMC
Journal Volume: 20
Journal Issue: 1
Source: J NANOBIOTECHNOL
Abstract: 
Background: MXenes with interesting optical and electrical properties have been attractive in biomedical applications such as antibacterial and anticancer agents, but their low photogeneration efficiency of reactive oxygen species (ROS) and poor stability are major concerns against microbial resistance. Methods: Water-dispersible single layer Ti3C2Tx -based MXene through etching tightly stacked MAX phase precursor using a minimally intensive layer delamination method. After addition of Cu(II) ions, the adsorbed Cu(II) ions underwent self-redox reactions with the surface oxygenated moieties of MXene, leading to in situ formation of Cu2O species to yield Cu2O/Ti3C2Tx nanosheets (heterostructures). Results: Under NIR irradiation, the Cu2O enhanced generation of electron-hole pairs, which boosted the photocatalytic production of superoxide and subsequent transformation into hydrogen peroxide. Broad-spectrum antimicrobial performance of Cu2O/Ti3C2Tx nanosheets with sharp edges is attributed to the direct contact-induced membrane disruption, localized photothermal therapy, and in situ generated cytotoxic free radicals. The minimum inhibitory concentration of Cu2O/Ti3C2Tx nanosheets reduced at least tenfold upon NIR laser irradiation compared to pristine Cu2O/Ti3C2Tx nanosheets. The Cu2O/Ti3C2Tx nanosheets were topically administrated on the methicillin-resistant Staphylococcus aureus (MRSA) infected wounds on diabetic mice. Conclusion: Upon NIR illumination, Cu2O/Ti3C2Tx nanosheets eradicated MRSA and their associated biofilm to promote wound healing. The Cu2O/Ti3C2Tx nanosheets with superior catalytic and photothermal properties have a great scope as an effective antimicrobial modality for the treatment of infected wounds.
URI: http://scholars.ntou.edu.tw/handle/123456789/21856
ISSN: 1477-3155
DOI: 10.1186/s12951-022-01428-3
Appears in Collections:生命科學暨生物科技學系
03 GOOD HEALTH AND WELL-BEING

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