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Recent advances in surface-functionalised photosensitive antibacterials with synergistic effects

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摘要 The alarm has been ringing over the gradually increasing drug-resistant bacteria,which calls for the development of safer antibacterial materials.Photosensitive antibacterials are considered as a promising alternative solution due to their unique light-activated antimicrobial mechanism,which in-situ produces highly reactive oxygen species on the multiple and variable active sites for the inactivation of various microbes.However,there are some factors,including phototoxicity,oxygen consumption and the risk of microbial contamination,greatly limit the efficiency and application of photosensitisers(PSs)in practical biomedical applications.Some studies have explored the synergistic effects of PSs by antibiotics,photothermal agents,antibacterial nanoparticles and biofilm-disrupting enzymes.Moreover,novel synergistic methods for improving the antibacterial ability of PSs under low-energy irradiation,hypoxia conditions and dull conditions,have been rarely reviewed yet.Herein,the authors summarised some synergistic methods and related applications of surface-functionalised photosensitive antimicrobials,which were prepared with organic antimicrobial materials,superhydrophobic surfaces,upconversion nanoparticles and energy storage structures in recent years.Finally,the authors presented the advantages and challenges of these synergistic mechanisms,and further analysed the development trend and application prospects of the surface-functionalised photosensitive antibacterials in biomedical fields.
出处 《Biosurface and Biotribology》 EI 2019年第4期97-103,共7页 生物表面与生物摩擦学(英文)
基金 supported by the Open Funding Project of National Key Laboratory of Human Factors Engineering(grant no.SYFD150051805K) the Fundamental Research Funds for the Central Universities(no.2019XJ02) National Natural Science Foundation of China(no.51772251) the National Basic Research Program(grant no.2014CB931804) the Science and Technology Planning Project of Sichuan Province(nos.2017RZ0032,2016GZ0264 and 2018GZ0462).
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