A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors.
Current technologies are lacking in the area of deployable, in situ monitoring of complex chemicals in environmental applications. Microorganisms metabolize various chemical compounds and can be engineered to be analyte-specific making them naturally suited for robust chemical sensing. However, curr...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2017-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC5600388?pdf=render |
id |
doaj-caadb1670c334f8fb5c83d8726631c54 |
---|---|
record_format |
Article |
spelling |
doaj-caadb1670c334f8fb5c83d8726631c542020-11-25T02:27:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01129e018499410.1371/journal.pone.0184994A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors.Alyssa Y ZhouMoshe BaruchCaroline M Ajo-FranklinMichel M MaharbizCurrent technologies are lacking in the area of deployable, in situ monitoring of complex chemicals in environmental applications. Microorganisms metabolize various chemical compounds and can be engineered to be analyte-specific making them naturally suited for robust chemical sensing. However, current electrochemical microbial biosensors use large and expensive electrochemistry equipment not suitable for on-site, real-time environmental analysis. Here we demonstrate a miniaturized, autonomous bioelectronic sensing system (BESSY) suitable for deployment for instantaneous and continuous sensing applications. We developed a 2x2 cm footprint, low power, two-channel, three-electrode electrochemical potentiostat which wirelessly transmits data for on-site microbial sensing. Furthermore, we designed a new way of fabricating self-contained, submersible, miniaturized reactors (m-reactors) to encapsulate the bacteria, working, and counter electrodes. We have validated the BESSY's ability to specifically detect a chemical amongst environmental perturbations using differential current measurements. This work paves the way for in situ microbial sensing outside of a controlled laboratory environment.http://europepmc.org/articles/PMC5600388?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alyssa Y Zhou Moshe Baruch Caroline M Ajo-Franklin Michel M Maharbiz |
spellingShingle |
Alyssa Y Zhou Moshe Baruch Caroline M Ajo-Franklin Michel M Maharbiz A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. PLoS ONE |
author_facet |
Alyssa Y Zhou Moshe Baruch Caroline M Ajo-Franklin Michel M Maharbiz |
author_sort |
Alyssa Y Zhou |
title |
A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
title_short |
A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
title_full |
A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
title_fullStr |
A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
title_full_unstemmed |
A portable bioelectronic sensing system (BESSY) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
title_sort |
portable bioelectronic sensing system (bessy) for environmental deployment incorporating differential microbial sensing in miniaturized reactors. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2017-01-01 |
description |
Current technologies are lacking in the area of deployable, in situ monitoring of complex chemicals in environmental applications. Microorganisms metabolize various chemical compounds and can be engineered to be analyte-specific making them naturally suited for robust chemical sensing. However, current electrochemical microbial biosensors use large and expensive electrochemistry equipment not suitable for on-site, real-time environmental analysis. Here we demonstrate a miniaturized, autonomous bioelectronic sensing system (BESSY) suitable for deployment for instantaneous and continuous sensing applications. We developed a 2x2 cm footprint, low power, two-channel, three-electrode electrochemical potentiostat which wirelessly transmits data for on-site microbial sensing. Furthermore, we designed a new way of fabricating self-contained, submersible, miniaturized reactors (m-reactors) to encapsulate the bacteria, working, and counter electrodes. We have validated the BESSY's ability to specifically detect a chemical amongst environmental perturbations using differential current measurements. This work paves the way for in situ microbial sensing outside of a controlled laboratory environment. |
url |
http://europepmc.org/articles/PMC5600388?pdf=render |
work_keys_str_mv |
AT alyssayzhou aportablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT moshebaruch aportablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT carolinemajofranklin aportablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT michelmmaharbiz aportablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT alyssayzhou portablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT moshebaruch portablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT carolinemajofranklin portablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors AT michelmmaharbiz portablebioelectronicsensingsystembessyforenvironmentaldeploymentincorporatingdifferentialmicrobialsensinginminiaturizedreactors |
_version_ |
1724842993454678016 |