| Literature DB >> 29155392 |
Fazal Abbas1, Qaisar Maqbool2, Mudassar Nazar3, Nyla Jabeen4, Syed Zaheer Hussain5, Sadaf Anwaar4, Nasir Mehmood6, Muhammad Saleem Sheikh7, Talib Hussain8, Sidra Iftikhar9.
Abstract
To grapple with multidrug resistant bacterial infections, implementations of antibacterial nanomedicines have gained prime attention of the researchers across the globe. Nowadays, zinc oxide (ZnO) at nano-scale has emerged as a promising antibacterial therapeutic agent. Keeping this in view, ZnO nanostructures (ZnO-NS) have been synthesised through reduction by P. aphylla aqueous extract without the utilisation of any acid or base. Structural examinations via scanning electron microscopy (SEM) and X-ray diffraction have revealed pure phase morphology with highly homogenised average particle size of 18 nm. SEM findings were further supplemented by transmission electron microscopy examinations. The characteristic Zn-O peak has been observed around 363 nm using ultra-violet-visible spectroscopy. Fourier-transform infrared spectroscopy examination has also confirmed the formation of ZnO-NS through detection of Zn-O bond vibration frequencies. To check the superior antibacterial activity of ZnO-NS, the authors' team has performed disc diffusion assay and colony forming unit testing against multidrug resistant E. coli, S. marcescens and E. cloacae. Furthermore, protein kinase inhibition assay and cytotoxicity examinations have revealed that green fabricated ZnO-NS are non-hazardous, economical, environmental friendly and possess tremendous potential to treat lethal infections caused by multidrug resistant pathogens.Entities:
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Year: 2017 PMID: 29155392 PMCID: PMC8676301 DOI: 10.1049/iet-nbt.2016.0238
Source DB: PubMed Journal: IET Nanobiotechnol ISSN: 1751-8741 Impact factor: 1.847