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- WHX Labs Dubai 2026
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- Service pour centrifugeuses et rotors
- Service pour pipette
- Étalonnage pour pipette neuve
- Service pour Mastercycler
- Service pour systèmes d’automatisation
- Services pour bioprocédés
- Service pour congélateurs
- Service pour incubateurs
- Service pour agitateurs
- Service de contrôle de la température et de l’agitation
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- WHX Labs Dubai 2026
- analytica 2026
- Forum Labo 2026
- SLAS Europe 2026
- Forum Labo 2026 Bioprocess
- Bioprocessing Summit Europe 2026
- BioProcess International 2026
- Swiss Biotech Day 2025
- ISCT 2026
- Pichia 2026
- Future Labs Live 2026
- BioProScale Sympposium 2026
- ASGCT 2026
- Eppendorf Automation Forum 2026
- ESACT 2026
- ELRIG Drug Discovery 2026
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- Pipetage manuel & distribution
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- Bioprocessing Scale Up
Bioprocessing Scale Up
Bioprocess scale up strategies
Eppendorf products for bioprocess scale up
Customer success stories
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Bioprocess scale up strategies
An established strategy when transitioning to larger working volumes is to monitor and control a single parameter. However, keeping one process parameter constant will change others; therefore, the cells’ growth environment can only be partly reproduced at different scales. Bioengineers must identify the parameters which influence cell growth and productivity most, to decide, which scale up strategy is the most suitable. Although bioprocessing scale up strategies that control several criteria are the most powerful, those that control singular parameters can still be effective, and are historically the most widely used due to their simplicity. Read on to learn more about common singular parameters to control.
Constant power input per liquid volume
Definition of power input per liquid volume (P/V)
- Np: the impeller power number (also known as Newton number),
- ρ: DI water density (kg/m3 ),
- N: agitation speed (rps),
- D: impeller outer diameter (m)
- V: full working volume (m3 ).
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How P/V influences the bioprocess:
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How to calculate P/V in bioprocessing:
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Constant tip speed
Definition: The impeller tip speed equals π x d x N, with
- D: impeller outer diameter (m)
- N: agitation speed (rps)
How the tip speed influences the bioprocess:
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How to calculate tip speed:
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Constant kLa
Definition of kLa
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How the kLa influences the bioprocess
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How to determine the kLa
Find a practical example of kLa determination in bioreactors from our application experts!
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Constant mixing time
Definition of mixing time in bioprocessing
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How the mixing time influences the bioprocess:
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How to determine mixing time in bioprocessing
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Bioprocess scale-up from R&D to manufacturing
Find out more about cell culture scale-up in single-use bioreactors:
- Learn about bioprocess scale-up strategies
- Discover a scale-up workflow for scaling up mAB production in CHO cells
- Learn about the Scale Up Assist software feature
Eppendorf offers solutions for powerful bioprocessing scale up
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Eppendorf bioreactors for bioprocessing scale up
Bioreactors for cell culture scale up
- Single-use bioreactors: The BioBLU® c Single-Use Bioreactor portfolio covers working volumes from 100 mL to 40 L. To make the progression from bench-scale to production-scale, the BioFlo® 720 is a bioreactor control system which is compatible with Thermo Scientific HyPerforma® 5:1 Single-Use Bioreactors with working volumes up to 500 L.
- Glass bioreactors: Eppendorf glass bioreactors for cell culture applications cover working volumes from 60 mL to 10.5 L and are compatible with the small and bench scale Eppendorf bioprocess systems .
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Bioreactors for fermentation scale up
- Glass bioreactors: Eppendorf glass bioreactors for microbial applications cover working volumes from 60 mL to 10.5 L and are compatible with the small and bench-scale Eppendorf bioprocess systems .
- Single-use bioreactors: The BioBLU® f Single-Use Bioreactor portfolio covers working volumes from 65 mL to 3.75 L. These stirred-tank bioreactors fully address the specific needs of fermentation.
Read more about the scalability of E. coli fermentation in BioBLU® f Single-Use Bioreactors.
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How our customers use our products
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Moving to a bioreactor
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