Small Tissue Labeling

Small tissue labeling is a technique for marking a defined group of cells or a small tissue region so its position, movements, and descendants can be tracked during development. Researchers apply a detectable marker, such as a fluorescent dye or genetically encoded reporter, to the target tissue and visualize the label over time as cells migrate, divide, or differentiate. In developmental biology, this approach helps establish cell lineages, map tissue origins, and determine how embryonic structures form. By linking early cell positions with later anatomical outcomes, small tissue labeling provides direct evidence for tissue patterning, morphogenesis, and developmental fate.

Small Tissue Labeling - Related Videos

Research

JoVE EoE - Neuropathology

Immunostaining of Fluorescently Labeled Astrocytes in a Mouse Brain Tissue Section

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2025

This video demonstrates the procedure for immunostaining a fixed mouse brain tissue section with fluorescently labeled astrocytes using primary and secondary antibodies and capture the images of the stained astrocytes through confocal microscopy.

Simultaneous Label-Free Autofluorescence Multi-Harmonic Microscopy

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Cited by 3 •

2025

This protocol presents a step-by-step guide for the Simultaneous Label-free Autofluorescence Multi-harmonic (SLAM) microscopic technique, including details on how to generate the laser light source, prepare a tissue sample, conduct imaging, and analyze the data. SLAM advances nonlinear microscopy by measuring four complementary label-free contrasts to investigate the tissue microenvironment.

Enhanced Sample Multiplexing of Tissues Using Combined Precursor Isotopic Labeling and Isobaric Tagging (cPILOT)

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Cited by 10 •

2017

Combined precursor isotopic labeling and isobaric tagging (cPILOT) is a quantitative proteomics strategy that enhances sample multiplexing capabilities of isobaric tags. This protocol describes the application of cPILOT to tissues from an Alzheimer's disease mouse model and wild-type controls.

In Situ Detection of Bacteria within Paraffin-embedded Tissues Using a Digoxin-labeled DNA Probe Targeting 16S rRNA

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Cited by 16 •

2015

Here a method to localize bacteria within paraffin-embedded tissues using DIG-labeled 16S rRNA-targeting DNA probes has been described. This protocol can be applied to study the role of bacteria in various diseases such as periodontitis, cancers, and inflammatory immune diseases.

Education

JoVE Science Education - Chemistry

Metabolic Labeling

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2023

Metabolic labeling is used to probe the biochemical transformations and modifications that occur in a cell. This is accomplished by using chemical analogs that mimic the structure of natural biomolecules. Cells utilize analogs in their endogenous biochemical processes, producing compounds that are labeled. The label allows for the incorporation of detection and affinity tags, which can then be used to elucidate metabolic pathways using other biochemical analytical techniques, such as SDS-PAGE...

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