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GUO Shaobo, CHEN Huihui, LIU Ke, et al. Bacteriostatic performance and mechanism of Ag quantum dots synergistic tetracycline[J]. Acta Materiae Compositae Sinica.
Citation: GUO Shaobo, CHEN Huihui, LIU Ke, et al. Bacteriostatic performance and mechanism of Ag quantum dots synergistic tetracycline[J]. Acta Materiae Compositae Sinica.

Bacteriostatic performance and mechanism of Ag quantum dots synergistic tetracycline

Funds:  Scientific Research Fund of the State Key Laboratory of Biological Resources and Ecological Environment of Qinba (SXS-2105), Project of Shaanxi Provincial Department of Education (22JK-0317), Shaanxi Provincial Natural Science Foundation (2023-JC-QN-0162, 2023-YBSF-334), and Fundamental Research Fund of Shaanxi University of Science and Technology (SLGKYXM2208)
  • Received Date: 2023-11-06
  • Accepted Date: 2023-12-23
  • Rev Recd Date: 2023-12-10
  • Available Online: 2024-01-21
  • Tetracycline antibiotics are widely used because of their high efficiency, low toxicity and broad-spectrum bacteriostasis, but with the abuse of antibiotics leading to the emergence of a large number of resistant bacteria, the medicinal value of tetracycline antibiotics gradually decreases. Although the ultra-small particle size of Ag can inactivate bacteria and even drug-resistant bacteria, it is highly toxic and easy to agglomerate when used alone. Therefore, in this study, the core-shell mesoporous Fe3O4@SiO2@mTiO2@Ag-tetracycline (FSmTA-T) composite was designed to solve the problems of antibiotic resistance, Ag nanoparticles agglomeration and strong toxicity by using the principle that the d orbital of Ag is a full electron structure and can be coordinated with the electron donor group. The results showed that the particle size of the Ag quantum dots in the prepared composite was 2.84 nm, which could be bonded with the carbonyl group in tetracycline ring 3, and compared with tetracycline, the composite material had high bacteriostatic activity against Escherichia coli, Staphylococcus aureus, tetracycline-resistant Salmonella and Candida albicans, and could effectively destroy the bacterial cell wall and make it die, while the toxicity was reduced to 1/3 of the original. Therefore, its superior bacteriostatic activity can be applied to sewage treatment.

     

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