Penicillin V, glucose and ethanol were monitored in 0.5 and 2.5 m3 bioreactors using an enzyme thermistor, modified for split-flow analysis. Penicillin V was also monitored in a 160 m3 bioreactor. The samples were split immediately before simultaneously entering the enzyme column and an identical re
Implementation of a thermal biosensor in a process environment: on-line monitoring of penicillin V in production-scale fermentations
β Scribed by M. Rank; B. Danielsson; J. Gram
- Publisher
- Elsevier Science
- Year
- 1992
- Tongue
- English
- Weight
- 376 KB
- Volume
- 7
- Category
- Article
- ISSN
- 0956-5663
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β¦ Synopsis
The production of penicillin V was monitored in 0.5 m3 and 160 m3 bioreactors. The thermal biosensor was an enzyme thermistor modified for split-flow analysis. The heat signal generated in the enzyme column was corrected for any nonspecific heat with the use of an identical but inactive reference column. The on-line monitoring was performed in the fermentation pilot plant and in a fermentation plant of Novo Nordisk A/S. Immobilized beta-lactamase was used to monitor three consecutive 0.5 m3 penicillin fermentations. Broth samples were continuously filtered through a tangential flow filtration unit in a sterile external loop. The on-line penicillin V values were 10% higher than those obtained by off-line HPLC analysis. Alternatively a polypropylene filtration probe was inserted into a 160 m3 bioreactor and samples were withdrawn at 0.5 ml/min. The same experiments were repeated with purified and immobilized penicillin V acylase. The on-line penicillin V values obtained with this enzyme correlated very well with those from HPLC analysis. The on-line monitoring was controlled and analysed by a software program written in Labtech Notebook.
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