研究目的
Investigating the influence of fluorescent dyes on the non-specific adhesion of double-stranded DNA molecules on zero-mode waveguide (ZMW) surfaces and benchmarking different surface passivation methods to prevent this adhesion.
研究成果
The choice of fluorescent dye significantly affects the adhesion of DNA to ZMW surfaces, with Atto dyes showing a pronounced tendency to adhere compared to Alexa dyes. Surface passivation with PVPA and PEG-silane of 1000 Da molar mass effectively prevents non-specific DNA adsorption. These findings are crucial for advancing single molecule fluorescence applications using ZMWs.
研究不足
The study is limited to aluminum ZMWs and specific fluorescent dyes. The findings may not be directly applicable to other materials or dye types. Additionally, the study does not explore the long-term stability of the passivation methods under various environmental conditions.
1:Experimental Design and Method Selection:
The study involves monitoring the influence of different fluorescent dyes on DNA adhesion to ZMW surfaces and benchmarking various surface passivation methods. Fluorescence correlation spectroscopy (FCS) is used to quantitatively analyze the adhesion and passivation efficiency.
2:Sample Selection and Data Sources:
Double-stranded DNA molecules labeled with different fluorescent dyes (Alexa Fluor 546 and 647, Atto 550 and 647N) are used. The ZMWs are fabricated on aluminum films deposited on glass coverslips.
3:List of Experimental Equipment and Materials:
Includes ZMWs, fluorescently labeled DNA, surface passivation agents (BSA, PEG, PVPA), and a custom-built confocal microscope setup for fluorescence measurements.
4:Experimental Procedures and Operational Workflow:
The DNA samples are diffused across ZMWs, and their fluorescence is monitored. Different passivation protocols are applied to the ZMWs, and their effectiveness in preventing DNA adhesion is evaluated.
5:Data Analysis Methods:
FCS is used to analyze the fluorescence time traces and determine the diffusion time and number of molecules. The fluorescence lifetime is also analyzed to assess the impact of surface adhesion on fluorescence decay dynamics.
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Zero-mode waveguide
Confining light down to the nanometer scale for single molecule fluorescence analysis.
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Alexa Fluor 546
Fluorescent dye for labeling DNA, showing negligible affinity for ZMW surfaces.
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Alexa Fluor 647
Fluorescent dye for labeling DNA, showing negligible affinity for ZMW surfaces.
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Atto 550
Fluorescent dye for labeling DNA, showing pronounced tendency to adhere to ZMW surfaces.
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Atto 647N
Fluorescent dye for labeling DNA, showing pronounced tendency to adhere to ZMW surfaces.
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Bovine serum albumin
BSA
Surface passivation agent for ZMWs.
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Polyethylene glycol
PEG
Surface passivation agent for ZMWs, with varying molecular weights (500 Da, 1000 Da, 5000 Da).
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Polyvinylphosphonic acid
PVPA
Surface passivation agent for ZMWs, selectively binding to the metal surface.
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Confocal microscope
Used for fluorescence measurements of DNA samples in ZMWs.
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