Cargando…

A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention

The detection of pathogens is a major public health issue. Every year, thousands of people die because of nosocomial infections. It is therefore important to be able to detect possible outbreaks as early as possible, especially in the hospital environment. Various pathogen detection techniques have...

Descripción completa

Detalles Bibliográficos
Autores principales: Claudinon, Julie, Steltenkamp, Siegfried, Fink, Manuel, Sych, Taras, Verreman, Benoît, Römer, Winfried, Madec, Morgan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7822415/
https://www.ncbi.nlm.nih.gov/pubmed/33374711
http://dx.doi.org/10.3390/bios11010002
_version_ 1783639630453669888
author Claudinon, Julie
Steltenkamp, Siegfried
Fink, Manuel
Sych, Taras
Verreman, Benoît
Römer, Winfried
Madec, Morgan
author_facet Claudinon, Julie
Steltenkamp, Siegfried
Fink, Manuel
Sych, Taras
Verreman, Benoît
Römer, Winfried
Madec, Morgan
author_sort Claudinon, Julie
collection PubMed
description The detection of pathogens is a major public health issue. Every year, thousands of people die because of nosocomial infections. It is therefore important to be able to detect possible outbreaks as early as possible, especially in the hospital environment. Various pathogen detection techniques have already been demonstrated. However, most of them require expensive and specific equipment, and/or complex protocols, which, most of the time, involve biochemical reaction and labelling steps. In this paper, a new method that combines microscopic imaging and machine learning is described. The main benefits of this approach are to be low-cost, label-free and easy to integrate in any suitable medical device, such as hand hygiene dispensers. The suitability of this pathogen detection method is validated using four bacteria, both in PBS (Phosphate Buffered Saline) and in isopropanol. In particular, we demonstrated an efficient pathogenic detection that is sensible to changes in the composition of a mixture of pathogens, even in alcohol-based solutions.
format Online
Article
Text
id pubmed-7822415
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-78224152021-01-23 A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention Claudinon, Julie Steltenkamp, Siegfried Fink, Manuel Sych, Taras Verreman, Benoît Römer, Winfried Madec, Morgan Biosensors (Basel) Article The detection of pathogens is a major public health issue. Every year, thousands of people die because of nosocomial infections. It is therefore important to be able to detect possible outbreaks as early as possible, especially in the hospital environment. Various pathogen detection techniques have already been demonstrated. However, most of them require expensive and specific equipment, and/or complex protocols, which, most of the time, involve biochemical reaction and labelling steps. In this paper, a new method that combines microscopic imaging and machine learning is described. The main benefits of this approach are to be low-cost, label-free and easy to integrate in any suitable medical device, such as hand hygiene dispensers. The suitability of this pathogen detection method is validated using four bacteria, both in PBS (Phosphate Buffered Saline) and in isopropanol. In particular, we demonstrated an efficient pathogenic detection that is sensible to changes in the composition of a mixture of pathogens, even in alcohol-based solutions. MDPI 2020-12-23 /pmc/articles/PMC7822415/ /pubmed/33374711 http://dx.doi.org/10.3390/bios11010002 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 Article
Claudinon, Julie
Steltenkamp, Siegfried
Fink, Manuel
Sych, Taras
Verreman, Benoît
Römer, Winfried
Madec, Morgan
A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title_full A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title_fullStr A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title_full_unstemmed A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title_short A Label-Free Optical Detection of Pathogens in Isopropanol as a First Step towards Real-Time Infection Prevention
title_sort label-free optical detection of pathogens in isopropanol as a first step towards real-time infection prevention
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7822415/
https://www.ncbi.nlm.nih.gov/pubmed/33374711
http://dx.doi.org/10.3390/bios11010002
work_keys_str_mv AT claudinonjulie alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT steltenkampsiegfried alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT finkmanuel alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT sychtaras alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT verremanbenoit alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT romerwinfried alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT madecmorgan alabelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT claudinonjulie labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT steltenkampsiegfried labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT finkmanuel labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT sychtaras labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT verremanbenoit labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT romerwinfried labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention
AT madecmorgan labelfreeopticaldetectionofpathogensinisopropanolasafirststeptowardsrealtimeinfectionprevention