Immunolabeling

Immunolabeling is a technique that uses antibodies to detect and visualize specific proteins or other antigens in cells, tissues, or biological samples. In neuroscience, a primary antibody binds the target molecule, while a labeled secondary antibody or directly conjugated detection reagent produces a fluorescent or enzymatic signal; fixation and permeabilization help preserve tissue structure and provide antibody access. Researchers use immunolabeling with fluorescence or microscopy to map neuronal markers, identify cell types, examine protein distribution, and study changes associated with development, disease, or injury. Multiplex labeling can reveal relationships among several cellular components within complex neural circuits.

Immunolabeling - Related Videos

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JoVE EoE - Neuropathology

Immunolabeling of Neuronal Membrane Proteins in a Freeze-fractured Specimen of Mouse Brain Tissue

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2025

Source: Schönherr, S., et. al. Combined Optogenetic and Freeze-fracture Replica Immunolabeling to Examine Input-specific Arrangement of Glutamate Receptors in the Mouse Amygdala. J. Vis. Exp. (2016)This video demonstrates the immunolabelling of freeze-fractured replicas of mouse brain tissue for electron microscopy. The fractured and coated replicas are digested to expose receptors. Primary and gold-tagged secondary antibodies are added to label specific neuronal membrane receptors. The replica...

Research

JoVE Journal - Neuroscience
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Combined Optogenetic and Freeze-fracture Replica Immunolabeling to Examine Input-specific Arrangement of Glutamate Receptors in the Mouse Amygdala

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Cited by 6 •

2016

This article illustrates how the expression of neurotransmitter receptors can be quantified and the pattern analyzed at synapses with identified pre and postsynaptic elements using a combination of viral transduction of optogenetic tools and the freeze-fracture replica immunolabeling technique.

Optical Clearing and Imaging of Immunolabeled Kidney Tissue

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Cited by 7 •

2019

The combination of antibody labeling, optical clearing, and advanced light microscopy allows three-dimensional analysis of complete structures or organs. Described here is a simple method to combine immunolabeling of thick kidney slices, optical clearing with ethyl cinnamate, and confocal imaging that enables visualization and quantification of three-dimensional kidney structures.

Immunolabelling Myofiber Degeneration in Muscle Biopsies

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Cited by 16 •

2019

Described here is a protocol for direct immunolabelling of necrotic myofibers in muscle cryosections. Necrotic cells are permeable to serum proteins, including immunoglobulin G (IgG). Revealing the uptake of IgG by myofibers allows the identification and quantification of myofibers that undergo necrosis regardless of muscle condition.

An Immunolabeling Technique to Visualize the Subcellular Localization of Proteins

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2025

This video demonstrates a technique for the immunolabeling of sigma-1 receptors in a murine heart tissue section using quantum dots. The heart tissue is fixed, osmicated, stained, dehydrated, embedded in resin, and then sectioned. The sections are then treated with antibodies and labeled with quantum dots to demarcate the subcellular localization of Sigma-1 receptors using electron microscopy.

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