研究目的
Investigating the cyclic changes in amide bands within Escherichia coli biofilms using real-time infrared attenuated total reflection spectroscopy to understand biofilm dynamics and starvation-induced behaviors.
研究成果
IR-ATR spectroscopy revealed cyclical fluctuations in amide bands and a steady increase in EPS bands in E. coli biofilms, indicating starvation and potential cannibalistic behavior in bottom layers. This method provides unique insights into biofilm dynamics over extended periods, suggesting future integration with complementary techniques for broader applications.
研究不足
The study is limited to monitoring only the bottom layers of the biofilm due to the penetration depth of the evanescent field in IR-ATR spectroscopy, which is a few micrometers. It does not cover the entire biofilm thickness or horizontal coverage variations, and results may be specific to E. coli and the experimental conditions used.
1:Experimental Design and Method Selection:
The study used IR-ATR spectroscopy to monitor E. coli biofilm formation in real-time under dynamic flow conditions, focusing on spectral changes in amide and EPS bands.
2:Sample Selection and Data Sources:
E. coli DH5α strains were cultured in Luria-Bertani medium, and biofilm formation was monitored on a ZnSe ATR crystal.
3:List of Experimental Equipment and Materials:
Equipment included a Bruker Alpha II FT-IR spectrometer with a DTGS detector and ZnSe ATR crystal, peristaltic pump, and flow-through assembly. Materials included LB medium, Korsolex disinfectant, and MilliQ water.
4:Experimental Procedures and Operational Workflow:
Steps involved disinfection, conditioning with LB medium, introduction of bacterial suspension, and continuous monitoring with IR spectra collected every 10 minutes.
5:Data Analysis Methods:
Spectra were processed using OPUS, EssentialFTIR, and OriginLab software, with integration of specific band areas and smoothing applied.
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FT-IR Spectrometer
Alpha II
Bruker Optics
Used for collecting infrared spectra of the biofilm in attenuated total reflection mode.
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ATR Crystal
Six-reflection ZnSe crystal
Bruker Optics
Serves as the waveguide for IR-ATR spectroscopy, enabling contact with the biofilm sample.
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Spectrophotometer
NanoDrop One
Thermo Scientific
Measures optical density of bacterial suspensions at 600 nm.
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Software
OPUS
Bruker Optics
Used for collecting and processing IR spectra.
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Centrifuge
5430
Eppendorf
Used for centrifuging bacterial cultures to separate cells from the medium.
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Peristaltic Pump
Alitea
Controls the flow of liquids through the experimental setup.
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Autoclave
VE-150
Systec
Sterilizes media and water used in the experiments.
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Software
EssentialFTIR
Operant LLC
Used for batch conversion of spectra.
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Software
OriginLab
OriginLab Corp.
Used for data analysis and plotting.
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