研究目的
To develop an inexpensive, rapid, and accurate detection method for uropathogenic Escherichia coli (UPEC) using crossed surface-relief gratings (CSRGs) as nanometallic sensors incorporated into an optical sensing platform.
研究成果
The study successfully demonstrated the first label-free detection of bacteria using CSRGs as nanoplasmonic sensors. The platform showed high sensitivity and specificity for UPEC detection, with a detection limit on par with clinical thresholds for UTI diagnosis. This work advances the field of smartphone-based sensing and telemedicine, offering potential for inexpensive point-of-care diagnostic devices.
研究不足
The platform had limitations in detecting lower concentrations of bacteria due to the resolution of the USB spectrometer. Future improvements could include SPR imaging techniques and the incorporation of microfluidic components for multiplexed sensing.
1:Experimental Design and Method Selection:
The study employs CSRGs as nanoplasmonic sensors for the detection of UPEC. The methodology involves the fabrication of CSRGs on azo-glass substrates through laser inscription, followed by sputter deposition of a gold film. The optical platform includes a white LED light source, dichroic polarizers, and a portable USB spectrometer for SPR-based sensing.
2:Sample Selection and Data Sources:
UPEC and other UTI-causing Gram-negative bacteria were cultured and used for detection. The platform's sensitivity was tested using sucrose solutions of varying concentrations to simulate changes in refractive index.
3:List of Experimental Equipment and Materials:
Equipment includes a solid-state diode-pumped laser for CSRG fabrication, a spin-coater, a surface profiler, a 3D printer for custom assemblies, and a UV-vis spectrometer. Materials include azo-glass, gold for sputter coating, PDMS for microfluidic chambers, and UPEC-specific antibodies.
4:Experimental Procedures and Operational Workflow:
The process involves CSRG fabrication, functionalization with UPEC-specific antibodies, and real-time detection of UPEC in PBS solution. The SPR signal shifts are monitored to detect bacterial capture.
5:Data Analysis Methods:
The SPR peak shifts are analyzed to determine the platform's sensitivity and detection limit for UPEC.
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solid-state diode-pumped laser
Verdi V5
Coherent Inc.
Used for laser inscription to fabricate CSRGs.
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surface profiler
Sloan Dektak II
Veeco Instruments Inc.
Used to measure the thickness of azo-glass films.
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UV-vis spectrometer
USB 2000+
Ocean Optics
Used for capturing SPR signals.
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spin-coater
Headway Research
Used for spin-coating azo-glass solution on glass slides.
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3D printer
Miicraft+
Miicraft
Used to print custom holders for the optical platform.
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