Single Molecule Imaging

Single molecule imaging is a set of microscopy methods that visualizes and measures individual molecules, revealing molecular behaviors hidden in ensemble measurements. These approaches typically use fluorescent labels and sensitive detectors to track molecules over time, while techniques such as total internal reflection fluorescence or single-molecule localization microscopy limit background or reconstruct images from precisely localized emitters. In bioengineering, single molecule imaging helps quantify molecular interactions, transport, assembly, and conformational changes in cells, biomaterials, and engineered systems. The resulting measurements can guide the design of biosensors, therapeutic delivery systems, and synthetic biological circuits while linking molecular dynamics to macroscopic function.

Single Molecule Imaging - Related Videos

Research

JoVE Journal - Biology

Single-Molecule Imaging of Nuclear Transport

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2010

Single molecule microscopy approch provided novel insights into nuclear transport.

Compact Quantum Dots for Single-molecule Imaging

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Cited by 13 •

2012

We describe the preparation of colloidal quantum dots with minimized hydrodynamic size for single-molecule fluorescence imaging. Compared to conventional quantum dots, these nanoparticles are similar in size to globular proteins and are optimized for single-molecule brightness, stability against photodegradation, and resistance to nonspecific binding to proteins and cells.

Combining Single-molecule Manipulation and Imaging for the Study of Protein-DNA Interactions

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Cited by 10 •

2014

Here we describe the instrumentation and methods for detecting single fluorescently-labeled protein molecules interacting with a single DNA molecule suspended between two optically trapped microspheres.

Single-molecule Imaging of Gene Regulation In vivo Using Cotranslational Activation by Cleavage (CoTrAC)

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Cited by 5 •

2013

We describe a fluorescence microscopy method, Co-Translational Activation by Cleavage (CoTrAC), to image the production of protein molecules in live cells with single-molecule precision without perturbing the protein's functionality. This method has been used to follow the stochastic expression dynamics of a transcription factor, the λ repressor CI 1.

Single-Molecule Imaging to Visualize Fusion Protein Condensates Assembly on DNA Curtains

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2025

This video describes a method to visualize the assembly of fusion protein condensates on DNA molecules at specific loci using single-molecule imaging. These condensates are formed due to LCD-LCD and LCD-DBD interactions, which allow for the recruitment of RNA polymerase II and enhanced gene transcription.

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