Micro-culture System

Micro-culture systems are miniaturized platforms that grow and analyze cells, microorganisms, or mixed biological communities in small, controlled volumes, enabling efficient study of complex biological interactions. By confining cultures within defined compartments and regulating factors such as cell number, nutrients, oxygen, and exposure conditions, these systems support reproducible measurements of growth, viability, signaling, and cell-to-cell interactions. In immunology and infection research, micro-culture systems help model host-pathogen encounters, evaluate immune-cell responses, and measure outputs such as cytokine production or pathogen replication while using fewer samples and reagents. Their controlled format also supports parallel experiments and may improve the scalability of infection models and therapeutic screening.

Micro-culture System - Related Videos

Research

JoVE Journal - Biology

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

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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.

Research

JoVE Journal - Biology
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How to Culture, Record and Stimulate Neuronal Networks on Micro-electrode Arrays (MEAs)

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Cited by 86 •

2010

This protocol provides the necessary information for setting up, caring for, recording from and electrically stimulating cultures on MEAs. In vitro networks provide a means for asking physiologically relevant questions at the network and cellular levels leading to a better understanding of brain function and dysfunction.

Interfacing 3D Engineered Neuronal Cultures to Micro-Electrode Arrays: An Innovative In Vitro Experimental Model

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Cited by 16 •

2015

In this work, a novel experimental model in which 3D neuronal cultures are coupled to planar Micro-Electrode Arrays (MEAs) is presented. 3D networks are built by seeding neurons in a scaffold made up of glass microbeads on which neurons grow and form interconnected 3D structures.

Developing a Micro-Tissue-Engineered Neural Network Using a Hydrogel-Based Micro-column

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2025

Source: Struzyna, L. A. et. al., Anatomically Inspired Three-dimensional Micro-tissue Engineered Neural Networks for Nervous System Reconstruction, Modulation, and Modeling. J. Vis. Exp. (2017)This video demonstrates the development of micro-tissue-engineered neural networks using a hydrogel micro-column with an extracellular matrix core. Seeded neuronal aggregates adhere, extend projections, and form structured neural networks, contributing to advancements in neurodevelopment and...

A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments

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Cited by 3 •

2013

We have developed an automated cell culture and interrogation platform for micro-scale cell stimulation experiments. The platform offers simple, versatile, and precise control in cultivating and stimulating small populations of cells, and recovering lysates for molecular analyses. The platform is well suited to studies that use precious cells and/or reagents.

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