Open Access
Open access
volume 19 issue 1 publication number 38

Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles

Reihaneh Haghniaz 1, 2
Atiya Rabbani 3
Fereshteh Vajhadin 1, 4
Taous Khan 5
Rozina Kousar 6
Abdul Rehman Khan 3
Hossein Montazerian 1
Javed Iqbal 7
Alberto Libanori 1
S H Cha 8
Fazli Wahid 9
Publication typeJournal Article
Publication date2021-02-05
scimago Q1
wos Q1
SJR2.282
CiteScore16.8
Impact factor12.6
ISSN14773155
Medicine (miscellaneous)
Pharmaceutical Science
Molecular Medicine
Applied Microbiology and Biotechnology
Bioengineering
Biomedical Engineering
Abstract
Increasing antibiotic resistance continues to focus on research into the discovery of novel antimicrobial agents. Due to its antimicrobial and wound healing-promoting activity, metal nanoparticles have attracted attention for dermatological applications. This study is designed to investigate the scope and bactericidal potential of zinc ferrite nanoparticles (ZnFe2O4 NPs), and the mechanism of anti-bacterial action along with cytocompatibility, hemocompatibility, and wound healing properties. ZnFe2O4 NPs were synthesized via a modified co-precipitation method. Structure, size, morphology, and elemental compositions of ZnFe2O4 NPs were analyzed using X-ray diffraction pattern, Fourier transform infrared spectroscopy, and field emission scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy. In PrestoBlue and live/dead assays, ZnFe2O4 NPs exhibited dose-dependent cytotoxic effects on human dermal fibroblasts. In addition, the hemocompatibility assay revealed that the NPs do not significantly rupture red blood cells up to a dose of 1000 µg/mL. Bacterial live/dead imaging and zone of inhibition analysis demonstrated that ZnFe2O4 NPs showed dose-dependent bactericidal activities in various strains of Gram-negative and Gram-positive bacteria. Interestingly, NPs showed antimicrobial activity through multiple mechanisms, such as cell membrane damage, protein leakage, and reactive oxygen species generation, and were more effective against gram-positive bacteria. Furthermore, in vitro scratch assay revealed that ZnFe2O4 NPs improved cell migration and proliferation of cells, with noticeable shrinkage of the artificial wound model. This study indicated that ZnFe2O4 NPs have the potential to be used as a future antimicrobial and wound healing drug.
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GOST Copy
Haghniaz R. et al. Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles // Journal of Nanobiotechnology. 2021. Vol. 19. No. 1. 38
GOST all authors (up to 50) Copy
Haghniaz R., Rabbani A., Vajhadin F., Khan T., Kousar R., Khan A. R., Montazerian H., Iqbal J., Libanori A., Cha S. H., Wahid F. Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles // Journal of Nanobiotechnology. 2021. Vol. 19. No. 1. 38
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1186/s12951-021-00776-w
UR - https://doi.org/10.1186/s12951-021-00776-w
TI - Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles
T2 - Journal of Nanobiotechnology
AU - Haghniaz, Reihaneh
AU - Rabbani, Atiya
AU - Vajhadin, Fereshteh
AU - Khan, Taous
AU - Kousar, Rozina
AU - Khan, Abdul Rehman
AU - Montazerian, Hossein
AU - Iqbal, Javed
AU - Libanori, Alberto
AU - Cha, S H
AU - Wahid, Fazli
PY - 2021
DA - 2021/02/05
PB - Springer Nature
IS - 1
VL - 19
PMID - 33546702
SN - 1477-3155
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Haghniaz,
author = {Reihaneh Haghniaz and Atiya Rabbani and Fereshteh Vajhadin and Taous Khan and Rozina Kousar and Abdul Rehman Khan and Hossein Montazerian and Javed Iqbal and Alberto Libanori and S H Cha and Fazli Wahid},
title = {Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles},
journal = {Journal of Nanobiotechnology},
year = {2021},
volume = {19},
publisher = {Springer Nature},
month = {feb},
url = {https://doi.org/10.1186/s12951-021-00776-w},
number = {1},
pages = {38},
doi = {10.1186/s12951-021-00776-w}
}