Single Molecule Detection

Single molecule detection is the measurement and analysis of individual molecules rather than ensemble populations, enabling researchers to reveal molecular behaviors that bulk methods can obscure. Techniques such as single-molecule fluorescence and nanopore sensing isolate or identify molecules by recording light from labeled targets or changes in ionic current as molecules pass through a nanoscale pore. In bioengineering, these approaches support highly sensitive biomarker analysis, DNA and RNA characterization, protein studies, and real-time investigation of molecular interactions. Their ability to resolve heterogeneity and transient events informs biosensor development, diagnostics, and engineered biological systems.

Single Molecule Detection - Related Videos

Research

JoVE Journal - Bioengineering

Label-free Single Molecule Detection Using Microtoroid Optical Resonators

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Cited by 32 •

2015

We have developed a label-free biosensing system based on optical resonator technology known as Frequency Locking Optical Whispering Evanescent Resonator (FLOWER) that is capable of detecting single molecules in solution. Here the procedures behind this work are described and presented.

Single-Molecule Imaging of Nuclear Transport

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2010

Single molecule microscopy approch provided novel insights into nuclear transport.

Nanomanipulation of Single RNA Molecules by Optical Tweezers

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Cited by 13 •

2014

Optical tweezers have been used to study RNA folding by stretching individual molecules from their 5’ and 3’ ends. Here common procedures are described to synthesize RNA molecules for tweezing, calibration of the instrument, and methods to manipulate single molecules.

Studying DNA Looping by Single-Molecule FRET

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Cited by 13 •

2014

This study presents a detailed experimental procedure to measure looping dynamics of double-stranded DNA using single-molecule Fluorescence Resonance Energy Transfer (FRET). The protocol also describes how to extract the looping probability density called the J factor.

Research

JoVE Journal - Bioengineering
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Single Molecule Fluorescence Microscopy on Planar Supported Bilayers

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Cited by 16 •

2015

Preparation of protein-functionalized planar glass-supported lipid bilayers, determination of protein mobility within and measurement of protein densities is shown here. A roadmap to building a noise-reduced Total Internal Reflection microscope is outlined, which allows visualizing single bilayer-resident fluorochromes with high spatiotemporal resolution.

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