Hydrophobic Microbioreactor System

A hydrophobic microbioreactor system is a miniaturized platform for cultivating and analyzing microorganisms in small, controlled reaction volumes, reducing material use while supporting parallel experiments. Its water-repellent surfaces limit wetting and unwanted adhesion, helping confine aqueous culture media within defined microchambers or droplets; fluid handling, gas exchange, and nutrient delivery then regulate microbial growth under selected conditions. These systems enable rapid measurement of growth kinetics, physiology, and product formation, making them useful for strain screening, antimicrobial testing, and bioprocess optimization. By combining microscale control with high experimental throughput, they support efficient biology research and early-stage process development.

Hydrophobic Microbioreactor System - Related Videos

Research

JoVE Journal - Biology

Proteolytically Degraded Alginate Hydrogels and Hydrophobic Microbioreactors for Porcine Oocyte Encapsulation

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Cited by 10 •

2020

Presented here are two protocols for the encapsulation of porcine oocytes in 3D culture conditions. In the first, cumulus-oocyte complexes (COCs) are encapsulated in fibrin-alginate beads. In the second, they are enclosed with fluorinated ethylene propylene powder particles (microbioreactors). Both systems ensure optimal conditions to maintain their 3D organization.

Research

JoVE Journal - Bioengineering
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Generic Protocol for Optimization of Heterologous Protein Production Using Automated Microbioreactor Technology

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Cited by 9 •

2017

This manuscript describes a generic approach for tailor-made design of microbial cultivation media. This is enabled by an iterative workflow combining Kriging-based experimental design and microbioreactor technology for sufficient cultivation throughput, which is supported by lab robotics to increase reliability and speed in liquid handling media preparation.

Monitoring Bacterial Growth in Distinct Media Formulations with an Automated Microbioreactor

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2025

Source: Hemmerich, J., et al. Protocol for Optimization of Heterologous Protein Production Using Automated Microbioreactor Technology. J. Vis. Exp. (2017).This video demonstrates the use of an automated microbioreactor to monitor bacterial growth and fluorescent protein secretion in response to varying media formulations. A genetically modified bacterium expressing a secretory fluorescent protein is cultured under antibiotic selection and inoculated into nutrient-varied wells. Real-time optical...

Calcium-Dependent Hydrophobic Interaction Chromatography: A Technique to Purify Calcium-Binding Proteins Based on Hydrophobic Interactions

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2025

In this video, we demonstrate the purification of calcium-binding protein from a dialyzed cell lysate through calcium-dependent hydrophobic interaction chromatography. The calcium-binding proteins expose a hydrophobic region upon binding with calcium, facilitating interaction with a hydrophobic group on resin. Later these proteins are eluted using calcium chelator EDTA that reverses the interaction.

Butyl-Dependant Hydrophobic Interaction Liquid Chromatography: A Technique to Characterize Antibody-Drug Conjugates Based on Hydrophobic Interactions

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2025

This video demonstrates the hydrophobic interaction liquid chromatography-based characterization of antibody-drug conjugates. Using a butyl ligand-based chromatography column, the antibody-drug conjugates are characterized via hydrophobic interactions with the ligand.

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