Model-based process design for surfactin production with Bacillus subtilis

dc.contributor.authorHiller, Eric
dc.contributor.authorOff, Manuel
dc.contributor.authorDittmann, Holger
dc.contributor.authorPerino, Elvio Henrique Benatto
dc.contributor.authorLilge, Lars
dc.contributor.authorHausmann, Rudolf
dc.contributor.corporateHiller, Eric; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.contributor.corporateOff, Manuel; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.contributor.corporateDittmann, Holger; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.contributor.corporatePerino, Elvio Henrique Benatto; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.contributor.corporateLilge, Lars; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.contributor.corporateHausmann, Rudolf; Department of Bioprocess Engineering, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany
dc.date.accessioned2026-01-28T08:58:34Z
dc.date.available2026-01-28T08:58:34Z
dc.date.issued2025
dc.date.updated2026-01-23T13:56:52Z
dc.description.abstractBacillus subtilis is one of the most important production organisms in industrial biotechnology. However, there is still limited knowledge about the kinetics of fed-batch processes in bioreactors, as well as a lack of biological performance indicators, such as production yields, particularly regarding their variation over time. Understanding these kinetics and changes is crucial for optimizing the productivity in fed-batch processes. Fed-batch bioreactor cultures of Bacillus subtilis BMV9 in high cell density processes for surfactin production have been characterized with a kinetic model composed of first-order ordinary differential equations, describing the time course of biomass, substrate, surfactin and acetate. This model contributes to understanding critical restrictions and the knowledge gained was used to design and implement a model-based process. The model integrates biomass growth based on Monod kinetics, substrate consumption, surfactin synthesis and formation of the by-product acetate. After the model was parameterized for B. subtilis BMV9 using 12 different fed-batch bioreactor experiments, the kinetic model was able to accurately describe biomass accumulation, substrate consumption, product formation rates and, to some extent, the overflow metabolism involving acetate. Based on this, the kinetic model was used for a process design, in which the batch was omitted, which led to a product titre of 46.33 g/L and a space–time-yield of 2.11 g/(L*h) was achieved. The kinetic model developed in this study enables the description of the time course of biomass growth, substrate consumption and product formation and thus significantly improves process understanding. The computation of process parameters, which are not analytically accessible at any time, could be realized. A sensitivity analysis identified the maximum specific growth rate, substrate-related maintenance and the maximum acetate formation rate as key parameters influencing model outputs.en
dc.description.sponsorshipOpen Access funding enabled and organized by Projekt DEAL.
dc.description.sponsorshipUniversität Hohenheim (3153)
dc.identifier.urihttps://doi.org/10.1186/s13568-025-01978-3
dc.identifier.urihttps://hohpublica.uni-hohenheim.de/handle/123456789/18806
dc.language.isoeng
dc.rights.licensecc_by
dc.subjectBacillus subtilis
dc.subjectSurfactin
dc.subjectBioreactor
dc.subjectBioprocess engineering
dc.subjectKinetic modeling
dc.subjectHigh-cell density
dc.subject.ddc660
dc.titleModel-based process design for surfactin production with Bacillus subtilisen
dc.type.diniArticle
dcterms.bibliographicCitationAMB express, 15 (2025), 1, 179. https://doi.org/10.1186/s13568-025-01978-3. ISSN: 2191-0855 Berlin/Heidelberg : Springer Berlin Heidelberg
dcterms.bibliographicCitation.articlenumber179
dcterms.bibliographicCitation.issn2191-0855
dcterms.bibliographicCitation.issue1
dcterms.bibliographicCitation.journaltitleAMB express
dcterms.bibliographicCitation.originalpublishernameSpringer Berlin Heidelberg
dcterms.bibliographicCitation.originalpublisherplaceBerlin/Heidelberg
dcterms.bibliographicCitation.volume15
local.export.bibtex@article{Hiller2025, doi = {10.1186/s13568-025-01978-3}, author = {Hiller, Eric and Off, Manuel and Dittmann, Holger et al.}, title = {Model-based process design for surfactin production with Bacillus subtilis}, journal = {AMB Express}, year = {2025}, volume = {15}, number = {1}, }
local.subject.sdg9
local.subject.sdg12
local.title.fullModel-based process design for surfactin production with Bacillus subtilis

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