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An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents

Biofilm formation on surfaces via microbial colonization causes infections and has become a major health issue globally. The biofilm lifestyle provides resistance to environmental stresses and antimicrobial therapies. Biofilms can cause several chronic conditions, and effective treatment has become...

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Autores principales: Asma, Syeda Tasmia, Imre, Kálmán, Morar, Adriana, Herman, Viorel, Acaroz, Ulas, Mukhtar, Hamid, Arslan-Acaroz, Damla, Shah, Syed Rizwan Ali, Gerlach, Robin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9394423/
https://www.ncbi.nlm.nih.gov/pubmed/35892912
http://dx.doi.org/10.3390/life12081110
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author Asma, Syeda Tasmia
Imre, Kálmán
Morar, Adriana
Herman, Viorel
Acaroz, Ulas
Mukhtar, Hamid
Arslan-Acaroz, Damla
Shah, Syed Rizwan Ali
Gerlach, Robin
author_facet Asma, Syeda Tasmia
Imre, Kálmán
Morar, Adriana
Herman, Viorel
Acaroz, Ulas
Mukhtar, Hamid
Arslan-Acaroz, Damla
Shah, Syed Rizwan Ali
Gerlach, Robin
author_sort Asma, Syeda Tasmia
collection PubMed
description Biofilm formation on surfaces via microbial colonization causes infections and has become a major health issue globally. The biofilm lifestyle provides resistance to environmental stresses and antimicrobial therapies. Biofilms can cause several chronic conditions, and effective treatment has become a challenge due to increased antimicrobial resistance. Antibiotics available for treating biofilm-associated infections are generally not very effective and require high doses that may cause toxicity in the host. Therefore, it is essential to study and develop efficient anti-biofilm strategies that can significantly reduce the rate of biofilm-associated healthcare problems. In this context, some effective combating strategies with potential anti-biofilm agents, including plant extracts, peptides, enzymes, lantibiotics, chelating agents, biosurfactants, polysaccharides, organic, inorganic, and metal nanoparticles, etc., have been reviewed to overcome biofilm-associated healthcare problems. From their extensive literature survey, it can be concluded that these molecules with considerable structural alterations might be applied to the treatment of biofilm-associated infections, by evaluating their significant delivery to the target site of the host. To design effective anti-biofilm molecules, it must be assured that the minimum inhibitory concentrations of these anti-biofilm compounds can eradicate biofilm-associated infections without causing toxic effects at a significant rate.
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spelling pubmed-93944232022-08-23 An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents Asma, Syeda Tasmia Imre, Kálmán Morar, Adriana Herman, Viorel Acaroz, Ulas Mukhtar, Hamid Arslan-Acaroz, Damla Shah, Syed Rizwan Ali Gerlach, Robin Life (Basel) Review Biofilm formation on surfaces via microbial colonization causes infections and has become a major health issue globally. The biofilm lifestyle provides resistance to environmental stresses and antimicrobial therapies. Biofilms can cause several chronic conditions, and effective treatment has become a challenge due to increased antimicrobial resistance. Antibiotics available for treating biofilm-associated infections are generally not very effective and require high doses that may cause toxicity in the host. Therefore, it is essential to study and develop efficient anti-biofilm strategies that can significantly reduce the rate of biofilm-associated healthcare problems. In this context, some effective combating strategies with potential anti-biofilm agents, including plant extracts, peptides, enzymes, lantibiotics, chelating agents, biosurfactants, polysaccharides, organic, inorganic, and metal nanoparticles, etc., have been reviewed to overcome biofilm-associated healthcare problems. From their extensive literature survey, it can be concluded that these molecules with considerable structural alterations might be applied to the treatment of biofilm-associated infections, by evaluating their significant delivery to the target site of the host. To design effective anti-biofilm molecules, it must be assured that the minimum inhibitory concentrations of these anti-biofilm compounds can eradicate biofilm-associated infections without causing toxic effects at a significant rate. MDPI 2022-07-23 /pmc/articles/PMC9394423/ /pubmed/35892912 http://dx.doi.org/10.3390/life12081110 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Asma, Syeda Tasmia
Imre, Kálmán
Morar, Adriana
Herman, Viorel
Acaroz, Ulas
Mukhtar, Hamid
Arslan-Acaroz, Damla
Shah, Syed Rizwan Ali
Gerlach, Robin
An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title_full An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title_fullStr An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title_full_unstemmed An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title_short An Overview of Biofilm Formation–Combating Strategies and Mechanisms of Action of Antibiofilm Agents
title_sort overview of biofilm formation–combating strategies and mechanisms of action of antibiofilm agents
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9394423/
https://www.ncbi.nlm.nih.gov/pubmed/35892912
http://dx.doi.org/10.3390/life12081110
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