Multi-compartment Device

A multi-compartment device is an engineered platform that separates fluids, cells, or biomaterials into distinct chambers while coordinating their controlled interaction. In bioengineering, physical barriers such as membranes, microchannels, porous interfaces, or valves regulate transport between compartments, allowing researchers to establish defined chemical gradients, flow conditions, and cell-specific environments. These devices support co-culture systems, organ-on-chip models, tissue engineering, drug testing, and studies of cell communication by reproducing interactions that are difficult to isolate in conventional culture systems. Their modular design can improve experimental control and help connect molecular mechanisms with tissue-level responses.

Multi-compartment Device - Related Videos

Research

JoVE Journal - Biology

A Multi-compartment CNS Neuron-glia Co-culture Microfluidic Platform

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Cited by 18 •

2009

We developed a novel multi-compartment neuron co-culture microsystem platform for in vitro CNS axon-glia interaction research. The platform is capable of conducting up to six independent experiments in parallel and was fabricated using a newly developed macro/micro hybrid fabrication method.

Harvesting, Embedding, and Culturing Dorsal Root Ganglia in Multi-compartment Devices to Study Peripheral Neuronal Features

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Cited by 3 •

2024

This protocol provides a technique to harvest and culture explanted dorsal root ganglion (DRG) from adult Sprague Dawley rats in a multi-compartment (MC) device.

A Multi-Parametric Islet Perifusion System within a Microfluidic Perifusion Device

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Cited by 5 •

2010

A microfluidic islet perifusion device was developed for the assessment of dynamic insulin secretion of multiple islets and simultaneous fluorescence imaging of calcium influx and mitochondrial potential changes.

Multi-step Variable Height Photolithography for Valved Multilayer Microfluidic Devices

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Cited by 26 •

2017

Multilayer microfluidic devices often involve the fabrication of master molds with complex geometries for functionality. This article presents a complete protocol for multi-step photolithography with valves and variable height features tunable to any application. As a demonstration, we fabricate a microfluidic droplet generator capable of producing hydrogel beads.

Education

JoVE Core - Pharmacology

Compartment Models: Two-Compartment Model

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2025

The two-compartment model divides the body into central and peripheral compartments to account for varying blood perfusion rates among organs and tissues, affecting drug distribution. The central compartment includes blood and highly perfused tissues with rapid drug distribution, while the peripheral compartment contains tissues with slower drug distribution. After a single IV bolus dose, the drug concentration is high in plasma and low in tissues. The drug distribution between compartments...

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