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Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2

Growth of mutant gdhA Pasteurella multocida B:2 was inhibited by the accumulation of a by-product, namely ammonium in the culture medium during fermentation. The removal of this by-product during the cultivation of mutant gdhA P. multocida B:2 in a 2 L stirred-tank bioreactor integrated with an inte...

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Autores principales: Oslan, Siti Nur Hazwani, Tan, Joo Shun, Abbasiliasi, Sahar, Ziad Sulaiman, Ahmad, Saad, Mohd Zamri, Halim, Murni, Ariff, Arbakariya B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7693258/
https://www.ncbi.nlm.nih.gov/pubmed/33114463
http://dx.doi.org/10.3390/microorganisms8111654
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author Oslan, Siti Nur Hazwani
Tan, Joo Shun
Abbasiliasi, Sahar
Ziad Sulaiman, Ahmad
Saad, Mohd Zamri
Halim, Murni
Ariff, Arbakariya B.
author_facet Oslan, Siti Nur Hazwani
Tan, Joo Shun
Abbasiliasi, Sahar
Ziad Sulaiman, Ahmad
Saad, Mohd Zamri
Halim, Murni
Ariff, Arbakariya B.
author_sort Oslan, Siti Nur Hazwani
collection PubMed
description Growth of mutant gdhA Pasteurella multocida B:2 was inhibited by the accumulation of a by-product, namely ammonium in the culture medium during fermentation. The removal of this by-product during the cultivation of mutant gdhA P. multocida B:2 in a 2 L stirred-tank bioreactor integrated with an internal column using cation-exchange adsorption resin for the improvement of cell viability was studied. Different types of bioreactor system (dispersed and internal) with resins were successfully used for ammonium removal at different agitation speeds. The cultivation in a bioreactor integrated with an internal column demonstrated a significant improvement in growth performance of mutant gdhA P. multocida B:2 (1.05 × 10(11) cfu/mL), which was 1.6-fold and 8.4-fold as compared to cultivation with dispersed resin (7.2 × 10(10) cfu/mL) and cultivation without resin (1.25 × 10(10) cfu/mL), respectively. The accumulation of ammonium in culture medium without resin (801 mg/L) was 1.24-fold and 1.37-fold higher than culture with dispersed resin (642.50 mg/L) and culture in the bioreactor integrated with internal adsorption (586.50 mg/L), respectively. Results from this study demonstrated that cultivation in a bioreactor integrated with the internal adsorption column in order to remove ammonium could reduce the inhibitory effect of this by-product and improve the growth performance of mutant gdhA P. multocida B:2.
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spelling pubmed-76932582020-11-28 Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2 Oslan, Siti Nur Hazwani Tan, Joo Shun Abbasiliasi, Sahar Ziad Sulaiman, Ahmad Saad, Mohd Zamri Halim, Murni Ariff, Arbakariya B. Microorganisms Article Growth of mutant gdhA Pasteurella multocida B:2 was inhibited by the accumulation of a by-product, namely ammonium in the culture medium during fermentation. The removal of this by-product during the cultivation of mutant gdhA P. multocida B:2 in a 2 L stirred-tank bioreactor integrated with an internal column using cation-exchange adsorption resin for the improvement of cell viability was studied. Different types of bioreactor system (dispersed and internal) with resins were successfully used for ammonium removal at different agitation speeds. The cultivation in a bioreactor integrated with an internal column demonstrated a significant improvement in growth performance of mutant gdhA P. multocida B:2 (1.05 × 10(11) cfu/mL), which was 1.6-fold and 8.4-fold as compared to cultivation with dispersed resin (7.2 × 10(10) cfu/mL) and cultivation without resin (1.25 × 10(10) cfu/mL), respectively. The accumulation of ammonium in culture medium without resin (801 mg/L) was 1.24-fold and 1.37-fold higher than culture with dispersed resin (642.50 mg/L) and culture in the bioreactor integrated with internal adsorption (586.50 mg/L), respectively. Results from this study demonstrated that cultivation in a bioreactor integrated with the internal adsorption column in order to remove ammonium could reduce the inhibitory effect of this by-product and improve the growth performance of mutant gdhA P. multocida B:2. MDPI 2020-10-24 /pmc/articles/PMC7693258/ /pubmed/33114463 http://dx.doi.org/10.3390/microorganisms8111654 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Oslan, Siti Nur Hazwani
Tan, Joo Shun
Abbasiliasi, Sahar
Ziad Sulaiman, Ahmad
Saad, Mohd Zamri
Halim, Murni
Ariff, Arbakariya B.
Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title_full Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title_fullStr Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title_full_unstemmed Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title_short Integrated Stirred-Tank Bioreactor with Internal Adsorption for the Removal of Ammonium to Enhance the Cultivation Performance of gdhA Derivative Pasteurella multocida B:2
title_sort integrated stirred-tank bioreactor with internal adsorption for the removal of ammonium to enhance the cultivation performance of gdha derivative pasteurella multocida b:2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7693258/
https://www.ncbi.nlm.nih.gov/pubmed/33114463
http://dx.doi.org/10.3390/microorganisms8111654
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