Home
GSC Advanced Research and Reviews
Peer-reviewed | Multidisciplinary Journal | Impact factor 8.3 | ISSN: 2582-4597 | Crossref DOI

Main navigation

  • Home
    • Journal Information
    • Editorial Board Members
    • Reviewer Panel
    • Abstracting and Indexing
    • Journal Policies
    • Our CrossMark Policy
    • Publication Ethics
    • Issue in Progress
    • Current Issue
    • Past Issues
    • Instructions for Authors
    • Article processing fee
    • Track Manuscript Status
    • Get Publication Certificate
    • Join Editorial Board
    • Join Reviewer Panel
  • Contact us
  • Downloads

Effects of extremely low-frequency electromagnetic fields on the susceptibility and resistance mechanisms of multi-drug resistant Pseudomonas aeruginosa

Breadcrumb

  • Home
  • Effects of Extremely Low-frequency Electromagnetic Fields On The Susceptibility and Resistance Mechanisms of Multi-drug Resistant Pseudomonas Aeruginosa
  • Effects of extremely low-frequency electromagnetic fields on the susceptibility and resistance mechanisms of multi-drug resistant Pseudomonas aeruginosa

Ahmed Hamdy Badr 1, *, Mohamed Sherif 2, Ahmed Abdelaziz Sayed 3 and Mostafa Mohamed Elnakib 1

1 Medical Microbiology and Immunology Department, Military Medical Academy, Cairo, Egypt.
2 Microbiology and Immunology Department, Faculty of Medicine, Al-Azhar University, Cairo, Egypt.
3 Medical Microbiology and Immunology Department, Faculty of Science, Ain-Shams University, Cairo, Egypt.
 
Research Article
GSC Advanced Research and Reviews, 2022, 12(01), 091–100.
Article DOI: 10.30574/gscarr.2022.12.1.0187
DOI url: https://doi.org/10.30574/gscarr.2022.12.1.0187
Received on 10 June 2022; revised on 16 July 2022; accepted on 18 July 2022
 
The purpose of this study is to assess the impact of low-frequency electromagnetic fields (LF-EMFs = 0.5 MHz) on the phenotypic and genotypic levels concerning the antibiotic resistance, antimicrobial-resistant (AMR) genes, and resistance mechanisms of Pseudomonas aeruginosa (P. aeruginosa). In this study, the bacterial isolates were exposed to 0.5 MHz and then inoculated to a new medium for the assessment of their antibiotic sensitivity. The results showed that there were statistically significant changes in the antibiotic sensitivity upon exposure to extremely low-frequency waves along with significant changes in the antimicrobial genes and resistance mechanisms. We conclude that extremely LF-EMFs appeared to be effective in changing the antibiotic sensitivity and could be considered a future promising method for controlling bacterial resistance.
 
Electromagnetic Fields; Antibacterial Effects; Resistance; Pseudomonas; NGS
 
https://gscarr.gsconlinepress.com/sites/default/files/fulltext_pdf/GSCARR-2022-…

Preview Article PDF

Ahmed Hamdy Badr, Mohamed Sherif, Ahmed Abdelaziz Sayed and Mostafa Mohamed Elnakib. Effects of extremely low-frequency electromagnetic fields on the susceptibility and resistance mechanisms of multi-drug resistant Pseudomonas aeruginosa. GSC Advanced Research and Reviews, 2022, 12(1), 091-100. Article DOI: https://doi.org/10.30574/gscarr.2022.12.1.0187

Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


All statements, opinions, and data contained in this publication are solely those of the individual author(s) and contributor(s). The journal, editors, reviewers, and publisher disclaim any responsibility or liability for the content, including accuracy, completeness, or any consequences arising from its use.

Get Certificates

Get Publication Certificate

Download LoA

Check Corssref DOI details

Issue details

Issue Cover Page

Editorial Board

Table of content

Copyright © 2026 GSC Advanced Research and Reviews - All rights reserved

Developed & Designed by VS Infosolution