Bioreactors at the microliter scale offer a promising approach to accelerate bioprocess development. Advantages of such microbioreactors include a reduction in the use of expensive reagents. In this study, a chemostat operation mode of a cuvette-based microbubble column bioreactor made of polystyrene (working volume of 550 µL) was demonstrated. Aeration occurs through a nozzle (Ø ≤ 100 µm) and supports submerged whole-cell cultivation of Staphylococcus carnosus. Stationary concentrations of biomass and glucose were determined in the dilution rate regime ranging from 0.12 to 0.80 1/h with a glucose feed concentration of 1 g/L. For the first time, reaction kinetics of S. carnosus were estimated from data obtained from continuous cultivation. The maximal specific growth rate (µ = 0.824 1/h), Monod constant (K = 34 × 10g/L), substrate-related biomass yield coefficient (Y = 0.315 g/g), and maintenance coefficient (m = 0.0035 g/(g·h)) were determined. These parameters are now available for further studies in the field of synthetic biology.

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http://dx.doi.org/10.1007/s00449-019-02095-9DOI Listing

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