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Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey

The influence of initial pH on growth and nutrient (total sugars, nitrogen, and phosphorous) consumption by Enterococcus faecium CECT 410 was studied during batch cultures in whey. With these data, two realkalized fed-batch fermentations were developed using different feeding substrates. The shift f...

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Autores principales: Guerra, Nelson Pérez, Fajardo, Paula, Fuciños, Clara, Amado, Isabel Rodríguez, Alonso, Elisa, Torrado, Ana, Pastrana, Lorenzo
Formato: Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2896665/
https://www.ncbi.nlm.nih.gov/pubmed/20689729
http://dx.doi.org/10.1155/2010/290286
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author Guerra, Nelson Pérez
Fajardo, Paula
Fuciños, Clara
Amado, Isabel Rodríguez
Alonso, Elisa
Torrado, Ana
Pastrana, Lorenzo
author_facet Guerra, Nelson Pérez
Fajardo, Paula
Fuciños, Clara
Amado, Isabel Rodríguez
Alonso, Elisa
Torrado, Ana
Pastrana, Lorenzo
author_sort Guerra, Nelson Pérez
collection PubMed
description The influence of initial pH on growth and nutrient (total sugars, nitrogen, and phosphorous) consumption by Enterococcus faecium CECT 410 was studied during batch cultures in whey. With these data, two realkalized fed-batch fermentations were developed using different feeding substrates. The shift from homolactic to mixed acid fermentation, the biphasic kinetics observed for cell growth and nitrogen consumption and the increase in the concentrations of biomass and products (lactic acid, acetic acid, ethanol, and butane-2,3-diol) were the most noteworthy observations of these cultures. Modelling the fed-batch growth of Ent. faecium with the Logistic and bi-Logistic models was not satisfactory. However, biomass production was best mathematically described with the use of a double Monod model, which was expressed in terms of biomass, product accumulation, and nitrogen utilization. Product formation was successfully modelled with a modified form of the Luedeking and Piret model developed in this study.
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spelling pubmed-28966652010-08-05 Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey Guerra, Nelson Pérez Fajardo, Paula Fuciños, Clara Amado, Isabel Rodríguez Alonso, Elisa Torrado, Ana Pastrana, Lorenzo J Biomed Biotechnol Research Article The influence of initial pH on growth and nutrient (total sugars, nitrogen, and phosphorous) consumption by Enterococcus faecium CECT 410 was studied during batch cultures in whey. With these data, two realkalized fed-batch fermentations were developed using different feeding substrates. The shift from homolactic to mixed acid fermentation, the biphasic kinetics observed for cell growth and nitrogen consumption and the increase in the concentrations of biomass and products (lactic acid, acetic acid, ethanol, and butane-2,3-diol) were the most noteworthy observations of these cultures. Modelling the fed-batch growth of Ent. faecium with the Logistic and bi-Logistic models was not satisfactory. However, biomass production was best mathematically described with the use of a double Monod model, which was expressed in terms of biomass, product accumulation, and nitrogen utilization. Product formation was successfully modelled with a modified form of the Luedeking and Piret model developed in this study. Hindawi Publishing Corporation 2010 2010-06-29 /pmc/articles/PMC2896665/ /pubmed/20689729 http://dx.doi.org/10.1155/2010/290286 Text en Copyright © 2010 Nelson Pérez Guerra et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Guerra, Nelson Pérez
Fajardo, Paula
Fuciños, Clara
Amado, Isabel Rodríguez
Alonso, Elisa
Torrado, Ana
Pastrana, Lorenzo
Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title_full Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title_fullStr Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title_full_unstemmed Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title_short Modelling the Biphasic Growth and Product Formation by Enterococcus faecium CECT 410 in Realkalized Fed-Batch Fermentations in Whey
title_sort modelling the biphasic growth and product formation by enterococcus faecium cect 410 in realkalized fed-batch fermentations in whey
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2896665/
https://www.ncbi.nlm.nih.gov/pubmed/20689729
http://dx.doi.org/10.1155/2010/290286
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