Rare-lacz Reporter Cells

Rare-lacz reporter cells are cells containing a lacZ reporter gene that enables researchers to identify and study infrequent cellular events, making them useful for detecting sparse gene expression or cell populations in neuroscience. The lacZ gene encodes β-galactosidase, which converts substrates such as X-gal into a visible blue product, allowing labeled cells to be distinguished by histochemical or microscopic analysis. This approach supports investigations of neuronal development, cellular lineage, circuit organization, and disease-related changes when only a small number of cells express the reporter. By converting molecular activity into a stable visual signal, rare-lacz reporters help connect gene regulation with cellular location and function.

Rare-lacz Reporter Cells - Related Videos

Research

JoVE Journal - Neuroscience
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Quantitative Measurement of Relative Retinoic Acid Levels in E8.5 Embryos and Neurosphere Cultures Using the F9 RARE-Lacz Cell-based Reporter Assay

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Cited by 6 •

2016

Methods to accurately measure retinoic acid (RA) levels in small amounts of tissue do not exist. This protocol describes the easy, quantitative measurement of relative RA levels in E8.5 embryos and neurospheres using an RA reporter cell line.

Research

JoVE EoE - Neuronal Culture Techniques

Employing Reporter Cells in a Co-Culture to Study Retinoic Acid Production by Mouse Embryonic Cells

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2025

This video demonstrates a technique for assessing retinoic acid activity in mouse embryos. Upon isolating cells from the mouse embryos, the cells are co-cultured with retinoic acid (RA) reporter cells. Embryonic cells produce RA, which induces beta-galactosidase expression in reporter cells, indicating RA activity in the embryonic cells.

Measuring Retinoic Acid Levels in Neurospheres Using a Retinoic Acid Reporter Cell Line

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2025

This video demonstrates the measurement of retinoic acid (RA) secretion from neurosphere cells using RA reporter cells. It outlines the steps involved in co-culturing neurosphere cells with RA reporter cells and performing a colorimetric RA assay to measure RA levels.

Isolating LacZ-expressing Cells from Mouse Inner Ear Tissues using Flow Cytometry

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Cited by 7 •

2011

Flow cytometry is a powerful tool allowing for the isolation and study of specific cell populations. This protocol describes steps for isolating LacZ-expressing cells from cochlear tissues from neonatal transgenic mice. Dissociated cochlear cells were labeled using fluorescent-conjugated substrates of β-galactosidase prior to separation via flow cytometry.

Detection and Enrichment of Rare Antigen-specific B Cells for Analysis of Phenotype and Function

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Cited by 36 •

2017

A simple yet effective method that employs magnetic nanoparticles to detect and enrich antigen-reactive B cells for functional and phenotypic analysis is described.

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