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Fixed-Bed Perfusion Reinvented for Adherent Cells

Boost efficiency, mitigate 3D scalability problems, and improve yields in cell therapy, extracellular vesicle, and viral vector production with cutting-edge bioreactor technology.

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Meet the Exo-Harvest
Bioreactor.

Explore our innovative technology in action.
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Scale Down or Scale Up. The choice is yours.

Our modular bioreactor platform empowers teams to run realistic small-scale experiments and transition seamlessly to manufacturing.

Accelerate development, reduce cost, and simplify tech transfer across every stage of bioproduction.

Engineered for Consistency Throughout Development

Precision-designed 3D scaffolds maximize surface area for adherent growth while preserving uniform flow dynamics. This structure ensures reproducibility and performance across all run sizes.

True Continuous Culture for Adherent Cells

Forget batch limitations with Exo-Harvest's perfusion-powered design. A continuous flow of fresh media maintains optimal cell conditions and unlocks higher yields with less manual intervention.

Integrated Monitoring for Quality Assurance

Built-in sensors and feedback loops track key process variables in real time. Fine-tune conditions, reduce variability, and scale up with confidence, not guesswork.

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Platform.
3
Formats.
0
Scale-Up Risk.

Exo-Harvest is available in Mini, Midi, and Maxi formats to support every stage of manufacturing. Each system shares the same fixed-bed architecture, ensuring consistent flow dynamics, real-time monitoring, and smooth progression from screening to GMP manufacturing.

Product Comparison
Mini System

Small-scale experiments, large-scale discoveries

Midi System

Not too little, not too large... just the right size

Maxi System

For big batches you can trust

Format

Up to 24 units in parallel for screening & optimization

Mid-size bioreactor to fine-tune perfusion and feeding

For GMP-compliant manufacturing

Key features
  • Miniaturized bioreactors with integrated sensors
  • Plug & play temperature controlling (sensing & heating) and media level management
  • User-friendly BSC-compatible design
  • Optimal, cost-efficient resource usage
  • Geometrical, scalable design maintaining hydrodynamic similarity
  • Advanced sensors and actuators for automated control (pH, dO2, temperature, nutriment, etc.)
  • Closed system operation
  • Real-time monitoring
  • Geometrical, scalable design maintaining hydrodynamic similarity
  • Advanced sensors and actuators for automated control (pH, dO2, temperature, nutriment, etc.)
  • Closed system operation
  • Real-time monitoring
Benefits
  • Rapid, flexible process development
  • Reduced costs and material needed
  • Consistent scalability
  • Tech transfer readiness
  • Generation of regulatory supporting data
  • Consistent development data
  • Full GMP compliance
  • Facilitate industrial production and market supply
Volume
  • 0.5 cm³ - 5 cm³
  • 50 cm³ - 500 cm³
  • Up to 2 000 cm³
Adherent surface equivalent

(0.5 cm³ = 25 cm²= one T-25 flask)

  • 23.5 cm² - 235 cm²
  • 2 350 cm² - 9 400 cm²
  • 23 500 cm² - 94 000 cm²
Mini System

Small-scale experiments, large-scale discoveries

Format

Up to 24 units in parallel for screening & optimization

Key features
  • Miniaturized bioreactors with integrated sensors
  • Plug & play temperature controlling (sensing & heating) and media level management
  • User-friendly BSC-compatible design
  • Optimal, cost-efficient resource usage
Benefits
  • Rapid, flexible process development
  • Reduced costs and material needed
Volume
  • 0.5 cm³ - 5 cm³
Adherent surface equivalent

(0.5 cm³ = 25 cm²= one T-25 flask)

  • 23.5 cm² - 235 cm²
Midi System

Not too little, not too large... just the right size

Format

Mid-size bioreactor to fine-tune perfusion and feeding

Key features
  • Geometrical, scalable design maintaining hydrodynamic similarity
  • Advanced sensors and actuators for automated control (pH, dO2, temperature, nutriment, etc.)
  • Closed system operation
  • Real-time monitoring
Benefits
  • Consistent scalability
  • Tech transfer readiness
  • Generation of regulatory supporting data
Volume
  • 50 cm³ - 500 cm³
Adherent surface equivalent

(0.5 cm³ = 25 cm²= one T-25 flask)

  • 2 350 cm² - 9 400 cm²
Maxi System

For big batches you can trust

Format

For GMP-compliant manufacturing

Key features
  • Geometrical, scalable design maintaining hydrodynamic similarity
  • Advanced sensors and actuators for automated control (pH, dO2, temperature, nutriment, etc.)
  • Closed system operation
  • Real-time monitoring
Benefits
  • Consistent development data
  • Full GMP compliance
  • Facilitate industrial production and market supply
Volume
  • Up to 2 000 cm³
Adherent surface equivalent

(0.5 cm³ = 25 cm²= one T-25 flask)

  • 23 500 cm² - 94 000 cm²

Built

For Biotech Experts.

By Biotech Experts.

Purpose-built for adherent cell line, viral vector, and extracellular vesicle manufacturing.


Exo-Harvest isn’t just a bioreactor. It’s your end-to-end biomanufacturing platform, delivering faster results, smarter optimization, and a seamless path to commercialization.

Small Scale, High Impact

  • Simultaneously test reaction conditions in parallel on a small scale.
  • Use less media and fewer cells - cut COGS dramatically.
  • Ideal for optimizing adherent cell lines, viral vectors, and exosomes.
  • Achieve optimized results in weeks, not months. 6× faster, 10× cheaper process development with a leaner team*.
  • Compact format supports high-throughput screening and iterative testing.

*compared to 12 months with 5-person team using traditional methods

Ready to Scale When You Are

  • Seamlessly transition from R&D to GMP-ready production.
  • Maintain process continuity and product quality across scales.
  • Designed for regulatory compliance and cleanroom integration.
  • Supports high-yield manufacturing with up to 10x greater output.
  • Integrated real-time monitoring and control for scalable production.
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Experience Our
  Innovative Platform

Discover how our bioreactor technology transforms exosome production with unmatched control and scalability.