Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose
A technique for rapid detection of pathogenic microorganisms is essential for the diagnosis of associated infections and for food safety analysis. Aeromonas hydrophila is one such food contaminant. Several methods for rapid detection of this pathogen have been developed; these include multiplex poly...
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doaj-a6979fbc01774cd282b22e5a80d55c472020-11-24T20:51:43ZengMDPI AGSensors1424-82202013-01-0113173674510.3390/s130100736Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic NoseKouki FujiokaEiji ArakawaJun-ichi KitaYoshihiro AoyamaYoshinobu ManomeKeiichi IkedaKenji YamamotoA technique for rapid detection of pathogenic microorganisms is essential for the diagnosis of associated infections and for food safety analysis. Aeromonas hydrophila is one such food contaminant. Several methods for rapid detection of this pathogen have been developed; these include multiplex polymerase chain reaction assays and the colony overlay procedure for peptidases. However, these conventional methods can only be used to detect the microorganisms at high accuracy after symptomatic onset of the disease. Therefore, in the future, simple pre-screening methods may be useful for preventing food poisoning and disease. In this paper, we present a novel system for the rapid detection of the microorganism A. hydrophila in cultured media (in <2 h), with the use of an electronic nose (FF-2A). With this electronic nose, we detected the changes of volatile patterns produced by A. hydrophila after 30 min culture. Our calculations revealed that the increased volatiles were similar to the odours of organic acids and esters. In future, distinctive volatile production patterns of microorganisms identified with the electronic nose may have the potential in microorganism detection.http://www.mdpi.com/1424-8220/13/1/736Aeromonas hydrophilapre-screeningrapid detectionvolatile production patternselectronic noseFF-2A |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kouki Fujioka Eiji Arakawa Jun-ichi Kita Yoshihiro Aoyama Yoshinobu Manome Keiichi Ikeda Kenji Yamamoto |
spellingShingle |
Kouki Fujioka Eiji Arakawa Jun-ichi Kita Yoshihiro Aoyama Yoshinobu Manome Keiichi Ikeda Kenji Yamamoto Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose Sensors Aeromonas hydrophila pre-screening rapid detection volatile production patterns electronic nose FF-2A |
author_facet |
Kouki Fujioka Eiji Arakawa Jun-ichi Kita Yoshihiro Aoyama Yoshinobu Manome Keiichi Ikeda Kenji Yamamoto |
author_sort |
Kouki Fujioka |
title |
Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose |
title_short |
Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose |
title_full |
Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose |
title_fullStr |
Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose |
title_full_unstemmed |
Detection of Aeromonas hydrophila in Liquid Media by Volatile Production Similarity Patterns, Using a FF-2A Electronic Nose |
title_sort |
detection of aeromonas hydrophila in liquid media by volatile production similarity patterns, using a ff-2a electronic nose |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2013-01-01 |
description |
A technique for rapid detection of pathogenic microorganisms is essential for the diagnosis of associated infections and for food safety analysis. Aeromonas hydrophila is one such food contaminant. Several methods for rapid detection of this pathogen have been developed; these include multiplex polymerase chain reaction assays and the colony overlay procedure for peptidases. However, these conventional methods can only be used to detect the microorganisms at high accuracy after symptomatic onset of the disease. Therefore, in the future, simple pre-screening methods may be useful for preventing food poisoning and disease. In this paper, we present a novel system for the rapid detection of the microorganism A. hydrophila in cultured media (in <2 h), with the use of an electronic nose (FF-2A). With this electronic nose, we detected the changes of volatile patterns produced by A. hydrophila after 30 min culture. Our calculations revealed that the increased volatiles were similar to the odours of organic acids and esters. In future, distinctive volatile production patterns of microorganisms identified with the electronic nose may have the potential in microorganism detection. |
topic |
Aeromonas hydrophila pre-screening rapid detection volatile production patterns electronic nose FF-2A |
url |
http://www.mdpi.com/1424-8220/13/1/736 |
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