Single Molecule Microscopy

Single molecule microscopy is a set of imaging methods that detects and tracks individual molecules, revealing molecular behavior that ensemble measurements can obscure. In fluorescence-based approaches, molecules are labeled with fluorophores, illuminated, and localized from the photons they emit; techniques such as single-molecule localization microscopy separate nearby signals by activating or observing only a sparse subset at a time. These measurements can quantify molecular motion, interactions, assembly, and spatial organization with nanometer-scale precision. In bioengineering, single molecule microscopy supports the design of biosensors, characterization of biomolecular machines, analysis of cellular transport, and development of nanoscale materials and therapeutic strategies.

Single Molecule Microscopy - Related Videos

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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.

Research

JoVE Journal - Bioengineering

Single-Molecule Localization Microscopy of Membrane Proteins using Single-Antibody Labeling

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2026

This protocol describes single-antibody labeling (SAL) to resolve the nanoscale spatial organization of plasma membrane proteins. By leveraging cumulative antibody-epitope interactions at the single-molecule level, membrane SAL (mSAL) maps local epitope distributions while simultaneously capturing antibody binding behavior in the native cellular environment.

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JoVE Journal - Biology
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Visualizing Single-molecule DNA Replication with Fluorescence Microscopy

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Cited by 9 •

2009

This protocol demonstrates a simple single-molecule fluorescence microscopy technique for visualizing DNA replication by individual replisomes in real time.

A Streamlined Protocol for Single-Molecule Localization Microscopy in Arabidopsis Nuclei

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2026

This protocol presents an efficient workflow for single-molecule localization microscopy imaging of isolated Arabidopsis nuclei, using optimized isolation, fixation, and labeling to achieve reliable nanoscale visualization of chromatin and RNA Polymerase II. This approach can be readily adapted to other chromatin-associated proteins or histone modifications for high-resolution imaging.

Single-Molecule Tracking Microscopy - A Tool for Determining the Diffusive States of Cytosolic Molecules

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Cited by 1 •

2019

3D single-molecule localization microscopy is utilized to probe the spatial positions and motion trajectories of fluorescently labeled proteins in living bacterial cells. The experimental and data analysis protocol described herein determines the prevalent diffusive behaviors of cytosolic proteins based on pooled single-molecule trajectories.

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