Organ Chip Culture

Organ chip culture is a microengineered method that grows living human cells in small, fluidically controlled devices designed to model the structure and function of an organ or tissue. Microfluidic channels regulate nutrient delivery, fluid flow, and cell-to-cell interfaces, allowing researchers to recreate tissue-specific conditions more closely than conventional two-dimensional culture. In neuroscience, organ chips can model the blood-brain barrier, neural tissue, and interactions between neurons, glial cells, and vascular cells. These systems support studies of brain development, neurological disease, drug transport, and neurotoxicity while reducing reliance on animal models and enabling more controlled, human-relevant experiments.

Organ Chip Culture - Related Videos

Education

JoVE Science Education - Basic Biology

Organ-on-Chip Models

0 Views •

2026

Introduction to Organ-on-Chip Models Organ-on-chip models are advanced microphysiological systems that recreate key structural and functional features of human organs in a controlled laboratory setting. These devices integrate living human cells within microfluidic channels, allowing researchers to simulate tissue–tissue interfaces, fluid flow, and mechanical forces that are essential for normal organ function. Unlike traditional cell cultures, which often lack these dynamic physiological cues,...

Research

JoVE Journal - Bioengineering

Modeling the Endothelial Glycocalyx Post-Pneumonectomy in a 3D Fluidic Chip - An Approach to Fabricating a Vascular-based Organ-on-Chip System

0 Views •

2025

Here we present a protocol for constructing an organ-on-chip (OOC) system designed to mimic pneumonectomy. This system investigates the potential correlation between glycocalyx impairment and complications following pneumonectomy.

Whole Organ Tissue Culture

0 Views •

2023

Whole organs can be cultured ex vivo using specialized bioreactors with the goal of repairing or replacing entire organs. This method uses a donor organ that is stripped of all cells, leaving behind the three-dimensional structure, which is then repopulated with new cells. This video demonstrates the whole organ culture of lungs and shows how a dynamic culture that mimics the mechanical stimulation in the body is needed to induce native tissue properties.

Research

JoVE Journal - Neuroscience
Free Sample

Culturing and Electrophysiology of Cells on NRCC Patch-clamp Chips

0 Views •

Cited by 6 •

2012

We show how planar patch-clamp chips fabricated at the National Research Council of Canada are sterilized, primed, loaded with medium, plated with cells, and used for electrophysiological recordings.

Chip-based Three-dimensional Cell Culture in Perfused Micro-bioreactors

0 Views •

Cited by 7 •

2008

We describe a chip-based platform for the three-dimensional cultivation of cells in micro-bioreactors. One chip can house up to 10 Mio. cells that can be cultivated under precisely defined conditions with regard to fluid flow, oxygen tension etc. in a sterile, closed circulation loop.

View All Results

FAQs

Related Topics