Fluorescent Molecular Rotors

Fluorescent molecular rotors are environment-sensitive dyes that report local viscosity through changes in fluorescence, making them useful tools for studying dynamic biological materials. After excitation, their molecular structure can rotate around a bond; in low-viscosity environments, this motion promotes nonradiative energy loss and weak fluorescence, whereas restricted rotation in more viscous surroundings increases emission intensity or lifetime. In bioengineering, these probes help map intracellular viscosity, characterize polymer networks and biomaterials, and monitor changes in cellular or tissue mechanics. Their noninvasive optical readouts support research on molecular transport, engineered microenvironments, and the physical properties that influence cell function.

Fluorescent Molecular Rotors - Related Videos

Research

JoVE Journal - Bioengineering
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Fluorescence Lifetime Imaging of Molecular Rotors in Living Cells

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Cited by 17 •

2012

Fluorescence Lifetime Imaging (FLIM) has emerged as a key technique to image the environment and interaction of specific proteins and dyes in living cells. FLIM of fluorescent molecular rotors allows mapping of viscosity in living cells.

Research

JoVE Journal - Engineering

How to Build a Vacuum Spring-transport Package for Spinning Rotor Gauges

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Cited by 1 •

2016

Here we describe how to build a robust spring-transport mechanism for a spinning rotor gauge. This device securely immobilizes the rotor and keeps it under vacuum during transportation. We also describe packaging that minimizes the risk of damage during transport. Tests show our design works for typical shocks during transport.

Visualizing Single Molecular Complexes In Vivo Using Advanced Fluorescence Microscopy

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Cited by 8 •

2009

Here we demonstrate the protocols for performing single-molecule fluorescence microscopy on living bacterial cells to enable functional molecular complexes to be detected, tracked and quantified.

From Fast Fluorescence Imaging to Molecular Diffusion Law on Live Cell Membranes in a Commercial Microscope

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Cited by 18 •

2014

Spatial distribution and temporal dynamics of plasma membrane proteins and lipids is a hot topic in biology. Here this issue is addressed by a spatio-temporal image fluctuation analysis that provides conceptually the same physical quantities of single particle tracking, but it uses small molecular labels and standard microscopy setups.

Fluorescence Molecular Tomography: An Imaging Technique for In Vivo Imaging of Fluorescent Protein-tagged Glioblastoma Xenografts in Mouse Model

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2025

In this video, we describe fluorescence molecular tomography or FMT for in vivo imaging of fluorescent protein-tagged glioblastoma xenografts in mouse models. The technique is useful for elucidating the effects of anti-tumor therapeutics at the molecular level.

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