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A graphene microelectrode array based microfluidic device for in situ continuous monitoring of biofilms.


ABSTRACT: In situ continuous monitoring of bacterial biofilms has been a challenging job so far, but it is fundamental to the screening of novel anti-biofilm reagents. In this work, a microfluidic system utilizing a graphene-modified microelectrode array sensor was proposed to realize the dynamic state of bacterial biofilm monitoring by electrochemical impedance. The results illustrated that the observation window period of the biofilm state is significantly prolonged due to the increment of bacterial cell load on the sensing interface, thereby greatly improving the sensing signal quality. Simulation of anti-biofilm drug screening demonstrated that the performance of this method manifestly exceeded that of its endpoint counterparts.

SUBMITTER: Song J 

PROVIDER: S-EPMC10496883 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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A graphene microelectrode array based microfluidic device for <i>in situ</i> continuous monitoring of biofilms.

Song Jin J   Ali Ashaq A   Ma Yaohong Y   Li Yiwei Y  

Nanoscale advances 20230811 18


<i>In situ</i> continuous monitoring of bacterial biofilms has been a challenging job so far, but it is fundamental to the screening of novel anti-biofilm reagents. In this work, a microfluidic system utilizing a graphene-modified microelectrode array sensor was proposed to realize the dynamic state of bacterial biofilm monitoring by electrochemical impedance. The results illustrated that the observation window period of the biofilm state is significantly prolonged due to the increment of bacter  ...[more]

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