Literature DB >> 34200053

ZnO Nanoparticles-Modified Dressings to Inhibit Wound Pathogens.

Sajjad Mohsin I Rayyif1, Hamzah Basil Mohammed1, Carmen Curuțiu1,2, Alexandra Cătălina Bîrcă3, Alexandru Mihai Grumezescu2,3, Bogdan Ștefan Vasile3, Lia Mara Dițu1,2, Veronica Lazăr1,2, Mariana Carmen Chifiriuc1,2,4, Grigore Mihăescu1, Alina Maria Holban1,2.   

Abstract

Zinc oxide (ZnO) nanoparticles (NPs) have been investigated for various skin therapies in recent years. These NPs can improve the healing and modulate inflammation in the wounds, but the mechanisms involved in such changes are yet to be known. In this study, we have designed a facile ZnO nano-coated dressing with improved antimicrobial efficiency against typical wound pathogens involved in biofilm and chronic infections. ZnO NPs were obtained by hydrothermal method and characterized by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and Fourier-transform infrared spectroscopy. Antibacterial and antibiofilm effects were evaluated against laboratory and clinical isolates of significant Gram-negative (Pseudomonas aeruginosa and Escherichia coli) and Gram-positive (Staphylococcus aureus and Enterococcus faecalis) opportunistic pathogens, by quantitative methods. Our results have shown that the developed dressings have a high antibacterial efficiency after 6-24 h of contact when containing 0.6 and 0.9% ZnO NPs and this effect is similar against reference and clinical isolates. Moreover, biofilm development is significantly impaired for up to three days of contact, depending on the NPs load and microbial species. These results show that ZnO-coated dressings prevent biofilm development of main wound pathogens and represent efficient candidates for developing bioactive dressings to fight chronic wounds.

Entities:  

Keywords:  ZnO nano-coatings; antimicrobial nanoparticles; biofilm control; chronic wounds; opportunistic pathogens

Year:  2021        PMID: 34200053     DOI: 10.3390/ma14113084

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  8 in total

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  8 in total

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