Fluorometry Readout

Fluorometry readout is an analytical measurement that quantifies fluorescent signals to indicate the presence, amount, or activity of a target in a sample. The method excites a fluorophore with light at a selected wavelength and measures the emitted light at a longer wavelength, with signal intensity related to fluorophore abundance under controlled conditions. In immunology and infection research, fluorometry readouts support assays that detect antibodies, antigens, nucleic acids, immune-cell responses, and pathogen-associated activity. These measurements provide sensitive, scalable data for comparing experimental conditions, evaluating host-pathogen interactions, and assessing diagnostic or therapeutic responses.

Fluorometry Readout - Related Videos

Research

JoVE Journal - Biochemistry

Voltage-clamp Fluorometry in Xenopus Oocytes Using Fluorescent Unnatural Amino Acids

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Cited by 13 •

2017

This article describes an enhancement of conventional Voltage-Clamp Fluorometry (VCF) where Fluorescent Unnatural Amino Acids (fUAA) are used instead of maleimide dyes, to probe structural rearrangements in ion channels. The procedure includes Xenopus oocyte DNA injection, RNA/fUAA coinjection, and simultaneous current and fluorescence measurements.

Measuring Intracellular Ca2+ Changes in Human Sperm using Four Techniques: Conventional Fluorometry, Stopped Flow Fluorometry, Flow Cytometry and Single Cell Imaging

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Cited by 30 •

2013

Intracellular Ca2+ dynamics are very important in sperm physiology and Ca2+-sensitive fluorescent dyes constitute a versatile tool to study them. Population experiments (fluorometry and stopped flow fluorometry) and single cell experiments (flow cytometry and single cell imaging) are used to track spatio-temporal [Ca2+] changes in human sperm cells.

Simple Bulk Readout of Digital Nucleic Acid Quantification Assays

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Cited by 5 •

2015

We describe an endpoint digital assay for quantifying nucleic acids with a simplified (analog) readout. We measure bulk fluorescence of droplet-based digital assays using a standard qPCR machine rather than specialized instrumentation and confirm our results by microscopy.

A Molecular Readout of Long-term Olfactory Adaptation in C. elegans

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Cited by 2 •

2012

Here we describe a molecular readout of long-term olfactory adaptation in Caenorhabditis elegans. The Protein Kinase G, EGL-4, is necessary for stable adaptation responses in the primary sensory neuron pair called AWC. During prolonged odor exposure EGL-4 translocates from the cytosol to nucleus of the AWC.

High Throughput, Real-time, Dual-readout Testing of Intracellular Antimicrobial Activity and Eukaryotic Cell Cytotoxicity

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Cited by 5 •

2016

A high throughput, real-time assay was developed to simultaneously identify (1) eukaryotic cell-penetrant antimicrobials targeting an intracellular bacterial pathogen, and (2) assess eukaryotic cell cytotoxicity. A variation on the same technology was thereafter combined with digital dispensing technology to enable facile, high-resolution, dose-response, and two- and three-dimensional synergy studies.

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