Automated Gut Microbiota Simulator In Vitro Gastrointestinal Fermentation System | Multi-Stage Gut Model Bioreactor
Product Spotlights
Automated Gut Microbiota Simulator
In Vitro Gastrointestinal Fermentation System | Multi-Stage Gut Model Bioreactor
1. Product Overview
The Automated Gut Microbiota Simulator is an advanced in vitro gastrointestinal bioreactor system designed to replicate the human digestive tract for gut microbiome research.
The system simulates six key sections of the human gastrointestinal tract:
Stomach
Duodenum
Small Intestine
Ascending Colon
Transverse Colon
Descending Colon
All six reactors are interconnected to form a dynamic and continuous gut simulation system, enabling researchers to study microbial growth, metabolism, and interactions under controlled conditions.
The system allows flexible configuration, enabling users to simulate any selected sections as required.
2. Integrated Structural Design
Six reactors integrated into a single ABS housing
Equipped with a top lid and large observation window
Openable cover for easy operation and maintenance
Provides thermal insulation and dust protection
Each reactor is equipped with multiple peristaltic pumps (5 channels per reactor) for precise control of fluids and nutrients.
3. Gut Microbiota Simulation Capabilities
The system enables precise control of key parameters:
Temperature
pH value
Oxygen concentration
Nutrient concentration
This allows the establishment of a stable gut microbial ecosystem, maintaining microbial diversity and dynamic balance while simulating real metabolic activities inside the human gut.
4. Environmental Control System
4.1 Anaerobic Environment Control
Advanced sealing and gas management technology
Maintains strict anaerobic conditions
Suitable for obligate anaerobic gut microbiota
Essential for accurate gut microbiome studies
4.2 Temperature Control
Control range: 30–37°C
Accuracy: ±0.2°C
Resolution: 0.1°C
Precisely mimics human intestinal temperature
4.3 pH Control System
Control range: pH 2–12
Accuracy: ±0.1
Supports different pH conditions across GI tract sections
5. Gas and Feeding Control System
5.1 Gas Flow Control
Unidirectional gas flow design
Flow rate ≤150 mL/min
Prevents contamination caused by backflow
5.2 Feeding System (Nutrient Supply)
Feeding rate: 6–25 mL/h
Programmable and continuous feeding
Ensures stable microbial growth and metabolism
5.3 Intelligent Stirring System
Uniform mixing for optimal contact between microbes and medium
Speed deviation: ±0.2%
Enhances microbial growth efficiency and consistency
6. System Performance & Smart Control
6.1 Intelligent Control System
High-resolution touchscreen interface
Real-time monitoring and parameter adjustment
Remote monitoring capability
Enables fully automated gut microbiota experiments
6.2 Long-Term Stable Operation
Continuous operation time ≥48 hours
Suitable for long-duration fermentation and microbiome studies
6.3 Odor and Noise Control
Built-in exhaust system with adjustable airflow
External duct connection supported
Effective odor removal system
Noise level:
≤65 dB (low-noise operation)
7. Applications
The automated gut microbiota simulator is widely used in:
Gut microbiome research
Probiotic and prebiotic evaluation
Functional food development
Drug metabolism and delivery studies
Synthetic biology and microbiome engineering
Contact & Customization
Looking for a reliable gut microbiota simulator manufacturer?
We provide:
Customized system design
Technical support for microbiome research
Global shipping and installation guidance
Contact us today for a complete in vitro gut microbiome solution tailored to your research needs.
Send Inquiry to This Supplier
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