Tunel Staining

TUNEL staining is a histological method that detects fragmented DNA in individual cells, making it useful for identifying cell death in tissues and cultured samples. The technique uses terminal deoxynucleotidyl transferase to add labeled nucleotides to exposed 3′-hydroxyl ends of broken DNA strands, which are then visualized by fluorescence or enzymatic detection. In neuroscience, TUNEL staining helps map neuronal injury and apoptosis after development, ischemia, trauma, or neurodegenerative disease. Combined with neuronal markers and complementary assays, it provides spatial information about cell death and supports studies of disease mechanisms and treatment effects.

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JoVE Science Education - Advanced Biology

The TUNEL Assay

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2023

One of the hallmarks of apoptosis is the nuclear DNA fragmentation by nucleases. These enzymes are activated by caspases, the family of proteins that execute the cell death program. TUNEL assay is a method that takes advantage of this feature to detect apoptotic cells. In this assay, an enzyme called terminal deoxynucleotidyl transferase catalyzes the addition of dUTP nucleotides to the free 3’ ends of fragmented DNA. By using dUTPs that are labeled with chemical tags that can produce...

Research

JoVE EoE - Neuropathology

TUNEL Assay for Detecting Apoptotic Cell Death in a Brain Slice

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2025

To detect apoptotic cell death using the TUNEL assay, treat the brain slice with the enzyme proteinase-K.

Terminal Transferase-Mediated dUTP Nick End-Labeling—TUNEL Assay: An In Situ Method to Detect DNA Fragmentation in Apoptotic Cells

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2025

In this video, the TUNEL assay is performed to detect the presence of apoptotic cells in a sample. The study involves using a special DNA polymerase - terminal deoxynucleotidyl transferase - that catalyzes the addition of labeled dUTPs to the 3' terminus of fragmented DNA, which can be observed and identified under a fluorescence microscope.

Microscopy and Staining: Gram, Capsule, and Endospore Staining

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2023

Source: Rhiannon M. LeVeque1, Natalia Martin1, Andrew J. Van Alst1, and Victor J. DiRita1 1 Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, Michigan, United States of America Bacteria are diverse microorganisms found nearly everywhere on Earth. Many properties help distinguish them from each other, including but not limited to Gram-staining type, shape and arrangement, production of capsule, and formation of spores. To observe these properties, one...

May-Grunwald Giemsa Staining: A Method to Stain Bone Marrow Cells

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2023

This video describes the technique of staining bone marrow cells using May- Grünwald Giemsa Staining. In the protocol, we will stain the murine myeloid leukemia cells, C149 cells, to analyze the morphology and differential counting.

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