4.8 Article

Versatile molybdenum disulfide based antibacterial composites for in vitro enhanced sterilization and in vivo focal infection therapy

期刊

NANOSCALE
卷 8, 期 22, 页码 11642-11648

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6nr01243d

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资金

  1. New Century Excellent Talents in University [NCET-13-0483]
  2. Yangling district research fund [2014NY-35]
  3. Fundamental Research Funds for the Northwest A&F University of China [2014YB093, 2452015257]
  4. High Technology Research and Development Program of the Xinjiang Uygur Autonomous Region [201317106]
  5. National Natural Science Foundation of China [31171682]

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Biologically, MoS2-based nanostructures have been intensely applied for the photothermal therapy of cancer, but rarely for antibacterial uses. In this contribution, a multifunctional chitosan (CS) functionalized magnetic MoS2 (abbreviated to CFM) was constructed to nonspecifically combat bacterial infection by integrating bacterial conjugation and enrichment, and NIR-triggered photothermal sterilization. Owing to the abundant introduced amino groups, the CFM complex offers a significantly enhanced conjugation efficiency without obvious specificity towards both Gram-positive and -negative bacteria compared to amino-free magnetic MoS2. The magnetic properties of CFM obtained from iron oxide facilitate the enrichment of a CFM-bacteria conjugate, improving the photothermal efficiency of CFM as a photothermal antibacterial agent. Specifically, after being trapped together with bacteria cells, CFM shows an enhanced in vitro photothermal sterilization ability. In vivo S. aureus-induced abscess treatment studies show faster healing when CFM is used as subcutaneous nano-localized heating sources with the assistance of an external magnet to concentrate the CFM-bacteria conjugate. This work establishes an innovative solution and a novel antimicrobial agent for combating bacterial infections without the use of antibiotics, which may open a new area of application and research for MoS2-based nanostructures.

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