Fluorescence Spectrophotometry

Fluorescence spectrophotometry is an analytical technique that measures light emitted by a fluorescent substance after excitation at a selected wavelength, providing sensitive information about chemical and biological samples. Its mechanism involves absorbing incident light, briefly reaching an excited electronic state, and releasing energy as longer-wavelength fluorescence; instruments quantify emission intensity across wavelengths or concentrations. In immunology and infection research, fluorescent labels can reveal antibody binding, antigen presence, microbial components, or cellular responses in assay samples. These measurements support quantitative immunoassays, biomarker analysis, pathogen detection, and evaluation of molecular interactions, while helping researchers characterize infection-related changes with high sensitivity.

Fluorescence Spectrophotometry - Related Videos

Education

JoVE Core - Analytical Chemistry

Spectrophotometry: Introduction

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2024

Spectrophotometry is the quantitative measurement of the absorption, reflection, diffraction, or transmission of electromagnetic radiation through a material as a function of the intensity and wavelength of the radiation. A spectrophotometer is a device used to measure the change in the radiation intensity caused by its interaction with the material. The essential components of a spectrophotometer include a source of electromagnetic radiation, a slot for placing a material to be analyzed, and a...

Research

JoVE Journal - Bioengineering
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Monitoring the Reductive and Oxidative Half-Reactions of a Flavin-Dependent Monooxygenase using Stopped-Flow Spectrophotometry

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Cited by 12 •

2012

We describe the use of a stopped-flow instrument to investigate both the reductive and oxidative half-reactions of Aspergillus fumigatus siderophore A (SidA), a flavin-dependent monooxygenase. We then show the spectra corresponding to the species in the reaction of SidA and we calculate the rate constants for their formation.

Measuring Cation Transport by Na,K- and H,K-ATPase in Xenopus Oocytes by Atomic Absorption Spectrophotometry: An Alternative to Radioisotope Assays

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Cited by 7 •

2013

We describe a method to quantify the activity of K+-countertransporting P-type ATPases by heterologous expression of the enzymes in Xenopus oocytes and measuring Rb+ or Li+ uptake into individual cells by atomic absorption spectrophotometry. The method is a sensitive and safe alternative to radioisotope flux experiments facilitating complex kinetic studies.

Introduction to Fluorescence Microscopy

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2023

Fluorescence microscopy is a very powerful analytical tool that combines the magnifying properties of light microscopy with visualization of fluorescence. Fluorescence is a phenomenon that involves absorbance and emission of a small range of light wavelengths by a fluorescent molecule known as a fluorophore. Fluorescence microscopy is accomplished in conjunction with the basic light microscope by the addition of a powerful light source, specialized filters, and a means of fluorescently...

Bimolecular Fluorescence Complementation

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Cited by 66 •

2011

The subcellular localization of proteins is important in determining the spatio-temporal regulation of cell signaling. Here, we describe bimolecular fluorescence complementation (BiFC) as a straightforward method for monitoring the spatial interactions of proteins in the cell.

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