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Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope

Despite the hope that was raised with the implementation of antibiotics to the treatment of infections in medical practice, the initial enthusiasm has substantially faded due to increasing drug resistance in pathogenic microorganisms. Therefore, there is a need for novel analytical and diagnostic me...

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Autores principales: Cieśluk, Mateusz, Deptuła, Piotr, Piktel, Ewelina, Fiedoruk, Krzysztof, Suprewicz, Łukasz, Paprocka, Paulina, Kot, Patrycja, Pogoda, Katarzyna, Bucki, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699805/
https://www.ncbi.nlm.nih.gov/pubmed/33233696
http://dx.doi.org/10.3390/pathogens9110969
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author Cieśluk, Mateusz
Deptuła, Piotr
Piktel, Ewelina
Fiedoruk, Krzysztof
Suprewicz, Łukasz
Paprocka, Paulina
Kot, Patrycja
Pogoda, Katarzyna
Bucki, Robert
author_facet Cieśluk, Mateusz
Deptuła, Piotr
Piktel, Ewelina
Fiedoruk, Krzysztof
Suprewicz, Łukasz
Paprocka, Paulina
Kot, Patrycja
Pogoda, Katarzyna
Bucki, Robert
author_sort Cieśluk, Mateusz
collection PubMed
description Despite the hope that was raised with the implementation of antibiotics to the treatment of infections in medical practice, the initial enthusiasm has substantially faded due to increasing drug resistance in pathogenic microorganisms. Therefore, there is a need for novel analytical and diagnostic methods in order to extend our knowledge regarding the mode of action of the conventional and novel antimicrobial agents from a perspective of single microbial cells as well as their communities growing in infected sites, i.e., biofilms. In recent years, atomic force microscopy (AFM) has been mostly used to study different aspects of the pathophysiology of noninfectious conditions with attempts to characterize morphological and rheological properties of tissues, individual mammalian cells as well as their organelles and extracellular matrix, and cells’ mechanical changes upon exposure to different stimuli. At the same time, an ever-growing number of studies have demonstrated AFM as a valuable approach in studying microorganisms in regard to changes in their morphology and nanomechanical properties, e.g., stiffness in response to antimicrobial treatment or interaction with a substrate as well as the mechanisms behind their virulence. This review summarizes recent developments and the authors’ point of view on AFM-based evaluation of microorganisms’ response to applied antimicrobial treatment within a group of selected bacteria, fungi, and viruses. The AFM potential in development of modern diagnostic and therapeutic methods for combating of infections caused by drug-resistant bacterial strains is also discussed.
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spelling pubmed-76998052020-11-29 Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope Cieśluk, Mateusz Deptuła, Piotr Piktel, Ewelina Fiedoruk, Krzysztof Suprewicz, Łukasz Paprocka, Paulina Kot, Patrycja Pogoda, Katarzyna Bucki, Robert Pathogens Review Despite the hope that was raised with the implementation of antibiotics to the treatment of infections in medical practice, the initial enthusiasm has substantially faded due to increasing drug resistance in pathogenic microorganisms. Therefore, there is a need for novel analytical and diagnostic methods in order to extend our knowledge regarding the mode of action of the conventional and novel antimicrobial agents from a perspective of single microbial cells as well as their communities growing in infected sites, i.e., biofilms. In recent years, atomic force microscopy (AFM) has been mostly used to study different aspects of the pathophysiology of noninfectious conditions with attempts to characterize morphological and rheological properties of tissues, individual mammalian cells as well as their organelles and extracellular matrix, and cells’ mechanical changes upon exposure to different stimuli. At the same time, an ever-growing number of studies have demonstrated AFM as a valuable approach in studying microorganisms in regard to changes in their morphology and nanomechanical properties, e.g., stiffness in response to antimicrobial treatment or interaction with a substrate as well as the mechanisms behind their virulence. This review summarizes recent developments and the authors’ point of view on AFM-based evaluation of microorganisms’ response to applied antimicrobial treatment within a group of selected bacteria, fungi, and viruses. The AFM potential in development of modern diagnostic and therapeutic methods for combating of infections caused by drug-resistant bacterial strains is also discussed. MDPI 2020-11-20 /pmc/articles/PMC7699805/ /pubmed/33233696 http://dx.doi.org/10.3390/pathogens9110969 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Cieśluk, Mateusz
Deptuła, Piotr
Piktel, Ewelina
Fiedoruk, Krzysztof
Suprewicz, Łukasz
Paprocka, Paulina
Kot, Patrycja
Pogoda, Katarzyna
Bucki, Robert
Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title_full Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title_fullStr Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title_full_unstemmed Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title_short Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope
title_sort physics comes to the aid of medicine—clinically-relevant microorganisms through the eyes of atomic force microscope
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699805/
https://www.ncbi.nlm.nih.gov/pubmed/33233696
http://dx.doi.org/10.3390/pathogens9110969
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