Kupffer Cells

Kupffer cells are specialized macrophages that reside within the liver’s sinusoidal capillaries, where they help maintain tissue homeostasis and protect the body from blood-borne threats. As blood passes through the sinusoids, these cells recognize and engulf bacteria, cellular debris, aged blood cells, and other particles through phagocytosis, while releasing cytokines that regulate inflammation and coordinate immune responses. Their activity supports liver function but can also contribute to inflammation and tissue injury when excessively activated. Studying Kupffer cells is therefore important for understanding liver infections, fibrosis, metabolic disease, drug toxicity, and interactions between hepatic and systemic immunity.

Kupffer Cells - 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.

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.

Research

JoVE Journal - Immunology and Infection
Free Sample

"Liver-on-a-Chip" Cultures of Primary Hepatocytes and Kupffer Cells for Hepatitis B Virus Infection

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Cited by 23 •

2019

The goal of this protocol is to provide a step-by-step guide to perform 3-D "liver-on-a-chip" infection experiments with the hepatitis B virus.

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.

Protocol for Isolation of Primary Human Hepatocytes and Corresponding Major Populations of Non-parenchymal Liver Cells

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Cited by 96 •

2016

A technique to isolate human hepatocytes and non-parenchymal liver cells from the same donor is described. The different liver cell types build the basis for functional liver models and tissue engineering. This new method aims to isolate liver cells in a high yield and viability.

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