研究目的
To develop a fast, simple, and sensitive method to analyze miRNAs in cancer cells using a microfluidic paper-based laser-induced fluorescence sensor based on duplex-specific nuclease amplification.
研究成果
The developed method is effective, selective, and sensitive for the determination of miRNAs in cancer cells, with potential applications in cancer diagnosis.
研究不足
The method requires optimization of reaction conditions and may be affected by other ingredients in cell lysates.
1:Experimental Design and Method Selection:
A microfluidic paper-based laser-induced fluorescence sensor was designed for miRNA detection using DSN amplification.
2:Sample Selection and Data Sources:
Cancer cells (A549, HeLa) and normal liver cells (LO2) were used.
3:List of Experimental Equipment and Materials:
DSN, Taqman probes, filter paper, wax printer, confocal LIF detector, flow cytometer.
4:Experimental Procedures and Operational Workflow:
Preparation of μPAD, optimization of reaction conditions, miRNA detection using LIF.
5:Data Analysis Methods:
Fluorescence intensity was measured and analyzed to determine miRNA concentrations.
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DSN
Evrogen
Selectively cuts DNA chains from double-stranded nucleic acids for fluorescence signal amplification.
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Taqman probes
Sangon Biotech Co., Ltd
Hybridize with target miRNAs to form double-stranded nucleic acids for DSN digestion.
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Qualitative filter paper
1–3 μM in pore size, 80 g/cm2 in average basis weight
Baoweide Environmental Protection Technology Co., Ltd
Used as the substrate for the microfluidic paper-based analytical device.
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Confocal LIF detector
Shandong Normal University
Detects fluorescence signals from the μPAD with high sensitivity.
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Flow cytometer
CRALD1209-002A
Digital Bio Technology Co., Ltd
Used for cell counting.
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Wax printer
Xerox 8570
Prints hydrophobic barriers on the paper for μPAD fabrication.
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