Case Study: Alarm Systems in Cultivated Meat Bioreactors
If you run a mammalian cell bioreactor for up to 28 days, weak alarm design can cost you the batch. In this case, I’d boil the article down to one...
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ABLE 30 mL Disposable Bioreactor is a single-use, 30 mL bioreactor vessel designed for the cultivation of suspension-adapted cells and microcarrier-based systems. It eliminates the need for cleaning and sterilisation validation, significantly increasing throughput in cultivated meat R&D workflows.
Features a unique internal impeller design that maximises gas exchange while maintaining ultra-low shear stress. The vessel is injection-moulded from medical-grade, animal-component-free plastics to ensure high biocompatibility and no leachables.
Validated for bovine myoblast expansion on microcarriers, achieving >2.5 x 10⁶ cells/mL density with 98% viability. Growth kinetics showed high correlation with larger stirred-tank bioreactors, facilitating predictable scale-up for commercial production.
Supplied sterile and ready-to-use in individual peel-packs for use with the ABLE 30/100 mL magnetic stir base. Features a secure screw cap with a breathable membrane for passive gas exchange during routine incubation.
Suitable for mammalian and avian cell lines from R&D to early pilot-scale expansion.Cellag Bio is the structured intelligence layer for cultivated meat R&D — scattered published research distilled into decision-ready records: what worked, what failed, the likely cause, and what to do instead. Before committing budget to a medium, reagent, or cell line, check the evidence behind it: real experimental outcomes and failure modes, not marketing claims.
Search by media, reagent, cell line or species (e.g. "Beefy-9" or "B8") to find the records that use it.
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