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After two optimization steps, the media was defined for SSF which supported the growth and high level of Ffase productivity (149.1 U/litre/h) in SSF compared to the medium before optimization (81.8 U/litre/h) and optimized medium for SmF (58.3 U/litre/h).
After two optimization steps, the media was defined for SSF which supported the growth and high level of Ffase productivity (149.1 U/l per h) in SSF compared to the medium before optimization (81.8 U/l per h) and optimized medium for SmF (58.3 U/l per h).
Using optimized medium for fermentation, nocathiacin I with pharmaceutically acceptable quality was easily obtained with a recovery of 67%.
Therefore, we tested the effectiveness of modified Middlebrook 7H10 media with MG concentrations ranging from 2.5 to 2500 mg/L and further tested an optimized medium for the effectiveness of mycobacterial isolation from 116 soil samples.
The optimized medium for studying the effect of L-glutamate depletion (SSBM-E) was identical to SSBM-P except for the concentrations of Na-glutamate and phosphate adjusted to be 15 g/L and 9.2 mM, respectively.
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The final cell concentration (28.88 g/L) obtained in heterotrophic cultivation using this optimized medium was about 3 and 2 times higher than obtained in photoautotrophic culture (8.40 g/L) and non-optimized medium for heterotrophic cultivation (13.81 g/L), respectively.
The optimized medium of SmF when used in SSF, did not improve the Ffase productivity and therefore medium for SSF was optimized independent of SmF.
The optimized medium of SmF when used in SSF, did not improve the Ffase productivity and therefore the medium for SSF was optimized independent of SmF.
Figure 1b shows the optimized medium formulation for LiP production.
Recently, an optimized medium (iSF1) for mouse somatic cell reprogramming was reported, which uses KSR supplemented with 1/200 N2 and 5 ng/ml bFGF.
The optimized medium was suitable for production using simple (22.9 mg/L.h) and fed-batch (32.4 mg/L.h) fermentation in oxygen-controlled bioreactor without foaming formation.
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