Kupffer's Vesicle

Kupffer’s vesicle is a transient, fluid-filled embryonic organ in zebrafish that establishes left-right body asymmetry during early development. Its epithelial cells bear motile cilia that generate directional fluid flow, which is sensed near the vesicle and initiates asymmetric Nodal signaling on the embryo’s left side. In chemical biology and developmental toxicology, Kupffer’s vesicle provides a tractable system for examining how molecular signals, ciliary function, and chemical exposures influence embryonic patterning. Imaging, genetic manipulation, and small-molecule screening can reveal mechanisms underlying congenital laterality defects and evaluate compounds that disrupt early developmental signaling.

Kupffer's Vesicle - Related Videos

Research

JoVE EoE - Immune Systems and Components

Isolation and Culture of Mouse Kupffer Cells

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2025

In this video, we demonstrate the isolation of Kupffer cells or liver macrophages from the mouse liver. The liver is perfused with a digestion solution followed by density gradient separation. The isolated adherent Kupffer cells can be used for further analysis.

Analysis of Gene Function and Visualization of Cilia-Generated Fluid Flow in Kupffer's Vesicle

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Cited by 19 •

2013

Cilia-generated fluid flow in Kupffer’s Vesicle (KV) controls left-right patterning of the zebrafish embryo. Here, we describe a technique to modulate gene function specifically in KV cells. In addition, we show how to deliver fluorescent beads into KV to visualize fluid flow.

Kupffer Cell Isolation for Nanoparticle Toxicity Testing

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Cited by 28 •

2015

Liver macrophages, named Kupffer cells, are responsible for the capture of circulating nanoparticles. We describe here a method, of high cell purity and yield, for Kupffer cell isolation. The modified LDH assay is used here to measure the toxicity induced by carbon nanotubes in Kupffer cells.

Education

JoVE Science Education - Advanced Biology

FM Dyes in Vesicle Recycling

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2023

FM dyes are a class of fluorescent molecules that has found important use in studying the vesicle recycling process. By virtue of a chemical structure, these molecules can insert themselves into the outer leaflet of phospholipid bilayer membranes. After membrane insertion, they are internalized into the cell via endocytosed vesicles, and released when these vesicles recycle back to the membrane. Since, these dyes fluoresce strongly in the hydrophobic environment within membranes and weakly in...

Measuring Peptide Translocation into Large Unilamellar Vesicles

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Cited by 9 •

2012

This protocol details a method for the quantitative measure of peptide translocation into large unilamellar lipid vesicles. This method also provides information about the rate of membrane translocation and can be used to identify peptides that efficiently and spontaneously cross lipid bilayers.

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