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Biotechnology and Bioengineering|March 31, 2004
Optimization of rifamycin B fermentation in shake flasks via a machine-learning-based approachPrashant M Bapat, Pramod P WangikarApplied Microbiology and Biotechnology|May 17, 2011
Role of extracellular protease in nitrogen substrate management during antibiotic fermentation: a process model and experimental validationPrashant M Bapat, Avinash Sinha, Pramod P WangikarBiotechnology Progress|December 6, 2003
An optimized method for Aspergillus niger spore production on natural carrier substratesPrashant M Bapat, Sucharita Kundu, Pramod P WangikarJournal of Biotechnology|August 15, 2006
Phase shifts in the stoichiometry of rifamycin B fermentation and correlation with the trends in the parameters measured onlinePrashant M Bapat, Debasish Das, Nishant N Dave, et al.Microbial Cell Factories|November 4, 2006
Hierarchical amino acid utilization and its influence on fermentation dynamics: rifamycin B fermentation using Amycolatopsis mediterranei S699, a case studyPrashant M Bapat, Debasish Das, Sujata V Sohoni, et al.Biotechnology and Bioengineering|November 23, 2005
Structured kinetic model to represent the utilization of multiple substrates in complex media during rifamycin B fermentationPrashant M Bapat, Sharad Bhartiya, K V Venkatesh, et al.Journal of Biotechnology|August 4, 2007
Detection of phase shifts in batch fermentation via statistical analysis of the online measurements: a case study with rifamycin B fermentationXuan-Tien Doan, Rajagopalan Srinivasan, Prashant M Bapat, et al.Applied Microbiology and Biotechnology|March 15, 2006
A cybernetic model to predict the effect of freely available nitrogen substrate on rifamycin B production in complex mediaPrashant M Bapat, Sujata V Sohoni, Tessa A Moses, et al.Journal of Industrial Microbiology & Biotechnology|March 23, 2012
Metabolic flexibility of D-ribose producer strain of Bacillus pumilus under environmental perturbationsRajesh K Srivastava, Soumen K Maiti, Debasish Das, et al.Methods in Molecular Biology (Clifton, N.J.)|January 2, 2020
SWATH: A Data-Independent Tandem Mass Spectrometry Method to Quantify 13C Enrichment in Cellular Metabolites and FragmentsDamini Jaiswal, Pramod P WangikarPageof 11