Fluorescence Characterization

Fluorescence characterization is the measurement and interpretation of light emitted by a substance after it absorbs light at a shorter wavelength, providing information about its composition and environment. In practice, an excitation source promotes molecules to higher electronic states, and detectors analyze the resulting emission spectrum, intensity, or decay behavior as molecules return toward the ground state. In medicine, these measurements help characterize fluorescent dyes, biomolecules, and labeled cells, supporting diagnostic assays, imaging, and evaluation of molecular interactions. Changes in emission can indicate differences in concentration, binding, conformation, or local conditions, making fluorescence characterization useful for studying disease mechanisms and assessing potential therapies.

Fluorescence Characterization - Related Videos

Research

JoVE Journal - Biology
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Characterization of G Protein-coupled Receptors by a Fluorescence-based Calcium Mobilization Assay

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Cited by 26 •

2014

The here described fluorescence-based calcium mobilization assay is a medium-throughput reverse pharmacology screening system for the identification of functionally activating ligand(s) of orphan G protein-coupled receptors (GPCRs).

Research

JoVE Journal - Biochemistry

Characterization of Amyloid Structures in Aging C. Elegans Using Fluorescence Lifetime Imaging

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Cited by 9 •

2020

Fluorescence lifetime imaging monitors, quantifies and distinguishes the aggregation tendencies of proteins in living, aging, and stressed C. elegans disease models.

Characterizing Single-Molecule Conformational Changes Under Shear Flow with Fluorescence Microscopy

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Cited by 1 •

2020

We present a protocol for immobilizing single macromolecules in microfluidic devices and quantifying changes in their conformations under shear flow. This protocol is useful for characterizing the biomechanical and functional properties of biomolecules such as proteins and DNA in a flow environment.

Research

JoVE Journal - Biochemistry
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Time-Resolved Fluorescence Anisotropy from Single Molecules for Characterizing Local Flexibility in Biomolecules

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Cited by 1 •

2025

Here, we present the protocol to study the local flexibility and dynamics of biomolecules using time-resolved fluorescence anisotropy at the single-molecule level in confocal microscopy mode.

A Method for Characterizing Embryogenesis in Arabidopsis

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Cited by 11 •

2017

This protocol outlines a method for observing embryogenesis in Arabidopsis via ovule clearance followed by the inspection of embryo pattern formation under a microscope.

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