Fluorescent Streptavidin-alexa 594

Fluorescent streptavidin-Alexa 594 is a red-orange fluorescent reagent used to detect biotinylated molecules in biological samples, enabling their localization by fluorescence microscopy. Streptavidin binds biotin with exceptionally high affinity, while the attached Alexa Fluor 594 dye emits light after excitation, converting the biotin-streptavidin interaction into a visible signal. In neuroscience, this reagent can label biotinylated antibodies, probes, and tracers to visualize neuronal structures, synaptic components, or tissue pathways. Its strong, spectrally distinct fluorescence supports multiplex imaging and helps researchers map molecular distributions and cellular connectivity in fixed specimens.

Fluorescent Streptavidin-alexa 594 - Related Videos

Research

JoVE Journal - Immunology and Infection

Visualizing Dengue Virus through Alexa Fluor Labeling

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Cited by 12 •

2011

Taking advantage of the advancements in fluorophore development and imaging technology, a simple method of Alexa Fluor labeling of dengue virus was devised to visualize the early interactions between virus and cell.

Analyzing Influenza Virus Internalization Using a Streptavidin Blocking Assay

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2026

Source: Pohl, M. O. & Stertz, S. Measuring Attachment and Internalization of Influenza A Virus in A549 Cells by Flow Cytometry. J. Vis. Exp. (2015)This video demonstrates the use of a streptavidin blocking assay to distinguish surface-bound from internalized influenza virus in human lung epithelial cells. Comparing fluorescence signals shows that a higher intensity after incubation indicates successful viral internalization.

Investigating the Origins of Sensory Neurons in the Dura Mater Using Fluorescence Microscopy

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2025

Source: Wang, J., et al. Visualizing the Calcitonin Gene-Related Peptide Immunoreactive Innervation of the Rat Cranial Dura Mater with Immunofluorescence and Neural Tracing. J. Vis. Exp. (2021). This video demonstrates a method to trace the origins of sensory neurons in the dura mater using fluorescence microscopy. A retrograde tracer is introduced into the exposed dura mater of an anesthetized rat. The tracer is taken up by sensory neuronal axons and travels retrogradely to their cell bodies...

Analyzing DNA-Protein Interactions with Streptavidin-Based Biolayer Interferometry

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2025

This article describes a protocol for studying DNA-protein interactions using a streptavidin-based biolayer interferometry (BLI) system. It outlines the essential steps and considerations for utilizing either basic or advanced binding kinetics to determine the equilibrium binding affinity (KD) of the interaction.

Research

JoVE Journal - Biochemistry
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Streptavidin-Affinity Grid Fabrication for Cryo-Electron Microscopy Sample Preparation

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Cited by 15 •

2023

A step-by-step protocol for fabricating streptavidin affinity grids is provided for use in structural studies of challenging macromolecular samples by cryo-electron microscopy.

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