Literature DB >> 31707278

A journey in the complex interactions between electrochemistry and bacteriology: From electroactivity to electromodulation of bacterial biofilms.

Dominika Czerwińska-Główka1, Katarzyna Krukiewicz2.   

Abstract

Although the term bioelectrochemistry tends to be associated with animal and human tissues, bioelectric currents exist also in plants and bacteria. Especially the latter, when agglomerated in the form of biofilms, can exhibit electroactivity and susceptibility to electrical stimulation. Therefore, electrochemical methods appear to become powerful techniques to expand the conventional strategies of biofilm characterization and modification. In this review, we aim to provide the insight into the electrochemical behaviour of bacteria and present the variety of electrochemical techniques that can be used either for the non-destructive monitoring of bacterial communities or modulation of their growth. The most common applications of electrical stimulation on biofilms are presented, including the prevention of bacterial growth by charging the surface of the materials, changing the direction of bacterial movement under the influence of the electric field and increasing of the potency of antibiotics when bactericides are coupled with the electric field. Also, the industrial applications of microbial electro-technologies are described, such as bioremediation, wastewater treatment, and microbial fuel cells. Consequently, we are showing the complexity of interactions that exist between electrochemistry and bacteriology that can be used for the benefit of these two disciplines.
Copyright © 2019 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Antimicrobial activity; Bacterial biofilm; Bacteriology; Electrical stimulation; Electroanalysis; Microbial fuel cells

Mesh:

Year:  2019        PMID: 31707278     DOI: 10.1016/j.bioelechem.2019.107401

Source DB:  PubMed          Journal:  Bioelectrochemistry        ISSN: 1567-5394            Impact factor:   5.373


  5 in total

1.  Localized electrical stimulation triggers cell-type-specific proliferation in biofilms.

Authors:  Colin J Comerci; Alan L Gillman; Leticia Galera-Laporta; Edgar Gutierrez; Alex Groisman; Joseph W Larkin; Jordi Garcia-Ojalvo; Gürol M Süel
Journal:  Cell Syst       Date:  2022-05-04       Impact factor: 11.091

2.  Quorum sensing signals improve the power performance and chlortetracycline degradation efficiency of mixed-culture electroactive biofilms.

Authors:  Xiao-Long Cheng; Qiang Xu; Jia-Dong Sun; Chun-Rui Li; Qian-Wen Yang; Biao Li; Xue-Ying Zhang; Jun Zhou; Xiao-Yu Yong
Journal:  iScience       Date:  2022-04-26

3.  Microbial fuel cell scale-up options: Performance evaluation of membrane (c-MFC) and membrane-less (s-MFC) systems under different feeding regimes.

Authors:  Xavier Alexis Walter; Elena Madrid; Iwona Gajda; John Greenman; Ioannis Ieropoulos
Journal:  J Power Sources       Date:  2022-02-01       Impact factor: 9.127

Review 4.  Recent Advances in the Control of Clinically Important Biofilms.

Authors:  Katarzyna Krukiewicz; Alicja Kazek-Kęsik; Monika Brzychczy-Włoch; Marek J Łos; Collins Njie Ateba; Parvaneh Mehrbod; Saeid Ghavami; Divine Yufetar Shyntum
Journal:  Int J Mol Sci       Date:  2022-08-23       Impact factor: 6.208

Review 5.  Scanning electrochemical microscopy and its potential for studying biofilms and antimicrobial coatings.

Authors:  Giada Caniglia; Christine Kranz
Journal:  Anal Bioanal Chem       Date:  2020-07-21       Impact factor: 4.142

  5 in total

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