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Enhanced antimicrobial efficacy of biogenic ZnO nanoparticles through UV-B activation: A novel approach for textile garment

  • David Asmat-Campos
    ,
  • ,
  • Marco Simbrón de la Cruz
    ,
  • Gabriela Montes de Oca-Vásquez
  • Universidad Privada del Norte
    ,
  • ,
  • Universidad Privada Norbert Wiener
    ,
  • National Center for High Technology
Research Output: Contribution to journal Article Peer-review

Open access

Publication Information

Output type

Research Output: Contribution to journal Article Peer-review

Original language

English

Article number

e25580

Journal (Volume, Issue Number)

Heliyon (Volume 10, Issue 3)

Publication milestones

  • Published - 15/02/2024

Publication status

Published - 15/02/2024

ISSN

2405-8440

Publication IDs

  • Scopus: 85183974045

Abstract

Zinc oxide nanoparticles (ZnO NP) are characterized by novel properties which have been attracting the attention of different lines of research due to their wide applicability. Obtaining this nanomaterial is strongly linked to biogenic synthesis methods, which have also been developed in this research, using Coriandrum sativum extract as a reducing agent. ZnO NPs have been properly characterized by techniques to evaluate their morphology by transmission electron microscopy (TEM) and elemental analysis by EDX. The evaluation of the antimicrobial and antifungal effects is linked to the use of a system provided by “locker sanitizer” equipment, which has been designed and built as part of this research, and is intended to treat textile garments by nebulizing the ZnO NP colloid (99.08 μg/mL) + UV-B, water + UV-B, and UV-B only, and also to evaluate the influence of the treatment time for 1, 2 and 3 min. In this sense, it is known that the nanomaterial used shows a better response to UV light because more hydroxyl radicals are produced, leading to a higher reaction rate, which results in greater efficiency in inhibitory processes. The results show that the use of the locker sanitizer is more efficient when using ZnO NP + UV-B light since it achieved 100 % growth inhibition against E. coli, C. albicans, and A. brasiliensis, and >99 % against S. aureus, after 3 min of treatment.

Funding Details

This research is part of the project financed by the Universidad Privada del Norte (UPN) - Direction of Research, Innovation & Social Responsibility. Our special acknowledgment to the reviewers, whose suggestions will serve to improve this work.
FundersFunding numbers
UPN
-

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