Photocatalytic graphitic carbon nitride-chitosan composites for pathogenic biofilm control under visible light irradiation

Photocatalysis holds promise for inactivating environmental pathogens. Visible-light-responsive composites of carbon-doped graphitic carbon nitride and chitosan with high reactivity and processability were fabricated, and they can control pathogenic biofilms for environmental, food, biomedical, and...

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Veröffentlicht in:Journal of hazardous materials 2021-04, Vol.408, p.124890-124890, Article 124890
Hauptverfasser: Shen, Hongchen, Durkin, David P., Aiello, Ashlee, Diba, Tara, Lafleur, John, Zara, Jason M., Shen, Yun, Shuai, Danmeng
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Sprache:eng
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Zusammenfassung:Photocatalysis holds promise for inactivating environmental pathogens. Visible-light-responsive composites of carbon-doped graphitic carbon nitride and chitosan with high reactivity and processability were fabricated, and they can control pathogenic biofilms for environmental, food, biomedical, and building applications. The broad-spectrum biofilm inhibition and eradication of the photocatalytic composites against Staphylococcus epidermidis, Pseudomonas aeruginosa PAO1, and Escherichia coli O157: H7 under visible light irradiation were demonstrated. Extracellular polymeric substances in Escherichia coli O157: H7 biofilms were most resistant to photocatalytic oxidation, which led to reduced performance for biofilm removal. 1O2 produced by the composites was believed to dominate biofilm inactivation. Moreover, the composites exhibited excellent performance for inhibiting biofilm development in urine, highlighting the promise for inactivating environmental biofilms developed from multiple bacterial species. Our study provides fundamental insights into the development of new photocatalytic composites, and elucidates the mechanism of how the photocatalyst reacts with a microbiological system. [Display omitted] •Visible-light-responsive graphitic carbon nitride-chitosan composites were fabricated.•Composites showed broad-spectrum activity for biofilm inhibition.•Extracellular polymeric substances determined biofilm eradication efficacy.•1O2 was responsible for biofilm inhibition and eradication.•Composites can reduce the contamination and transmission of environmental pathogens.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2020.124890