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Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology

Bibliographic Details
Main Author: Ribeiro, Susana C
Publication Date: 2023
Other Authors: Silva, Mara, Pflieger, Christian, Barroso, Vitor C, Filipe, Susana, Haertling, Thomas, Madruga, João, Silva, Célia CG
Format: Conference object
Language: eng
Source: Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)
Download full: http://hdl.handle.net/10174/36938
Summary: In the dairy industry, cheese production generates large quantities of liquid whey, the disposal of which is associated with environmental problems. However, cheese whey can be used as a nutrient medium to produce high-value compounds such as bacteriocins through fermentation with lactic acid bacteria (LAB). The application of new efficient methods for the concentration of functional food ingredients can give an important contribution to the valorisation of this subproduct. Therefore, the aim of the present study is to investigate the use of whey to produce bacteriocins by fermentation with bacteriocinogenic LAB and the application of nanofiltration techniques using ceramic membranes as a simple method to obtain bacteriocins. E. faecalis L3B1K3 isolated from an artisanal cheese from the Azores previously showed antimicrobial activity against Listeria spp. and Clostridium spp. by producing a 3 kDa bacteriocin. This strain was used to ferment sweet whey at 30°C for 48 hours. The results showed that sweet whey was a suitable medium to promote both bacterial growth and bacteriocin production. The fermented whey was then subjected to a nanofiltration protocol using a 3 nm ceramic membrane. The measured chemical oxygen demand (COD) increased fourfold (48.4 g/L) in the retentate compared to the initial sample. Bacteriocin activity in the retentate was also increased fourfold compared to fermented whey (12800 AU/mL and 3200 AU/mL, respectively), while no antimicrobial activity was detected in the permeate. The presence of bacteriocin in the whey, retentate and permeate was confirmed by RP-HPLC (retention time of 2.2 minutes). However, the peak area of bacteriocin in the retentate was ten times higher than in the permeate, demonstrating the efficiency of nanofiltration as a concentration method for antibacterial compounds (bacteriocins). In conclusion, these preliminary results have shown that nanofiltration methodologies can overcome the difficulties in recovery and concentrate bacteriocins produced in cheese whey.
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spelling Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technologybacteriocinscheese wheyvalorisationIn the dairy industry, cheese production generates large quantities of liquid whey, the disposal of which is associated with environmental problems. However, cheese whey can be used as a nutrient medium to produce high-value compounds such as bacteriocins through fermentation with lactic acid bacteria (LAB). The application of new efficient methods for the concentration of functional food ingredients can give an important contribution to the valorisation of this subproduct. Therefore, the aim of the present study is to investigate the use of whey to produce bacteriocins by fermentation with bacteriocinogenic LAB and the application of nanofiltration techniques using ceramic membranes as a simple method to obtain bacteriocins. E. faecalis L3B1K3 isolated from an artisanal cheese from the Azores previously showed antimicrobial activity against Listeria spp. and Clostridium spp. by producing a 3 kDa bacteriocin. This strain was used to ferment sweet whey at 30°C for 48 hours. The results showed that sweet whey was a suitable medium to promote both bacterial growth and bacteriocin production. The fermented whey was then subjected to a nanofiltration protocol using a 3 nm ceramic membrane. The measured chemical oxygen demand (COD) increased fourfold (48.4 g/L) in the retentate compared to the initial sample. Bacteriocin activity in the retentate was also increased fourfold compared to fermented whey (12800 AU/mL and 3200 AU/mL, respectively), while no antimicrobial activity was detected in the permeate. The presence of bacteriocin in the whey, retentate and permeate was confirmed by RP-HPLC (retention time of 2.2 minutes). However, the peak area of bacteriocin in the retentate was ten times higher than in the permeate, demonstrating the efficiency of nanofiltration as a concentration method for antibacterial compounds (bacteriocins). In conclusion, these preliminary results have shown that nanofiltration methodologies can overcome the difficulties in recovery and concentrate bacteriocins produced in cheese whey.2024-06-01T15:42:46Z2024-06-012023-06-01T00:00:00Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/conferenceObjecthttp://hdl.handle.net/10174/36938http://hdl.handle.net/10174/36938engS.C. RIBEIRO, M. SILVA, C. PFLIEGER, V. C. BARROSO, S. FILIPE, T. HAERTLING, J. MADRUGA, CÉLIA, C.G. SILVA, Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology, Bacteriocin International Conference, 2023, Lille, Francehttps://bic-2023.univ-lille.fr/naonaosimndndndndndndndndRibeiro, Susana CSilva, MaraPflieger, ChristianBarroso, Vitor CFilipe, SusanaHaertling, ThomasMadruga, JoãoSilva, Célia CGinfo:eu-repo/semantics/openAccessreponame:Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)instname:FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiainstacron:RCAAP2024-06-04T01:46:54Zoai:dspace.uevora.pt:10174/36938Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireinfo@rcaap.ptopendoar:https://opendoar.ac.uk/repository/71602025-05-28T17:53:18.137351Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) - FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiafalse
dc.title.none.fl_str_mv Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
title Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
spellingShingle Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
Ribeiro, Susana C
bacteriocins
cheese whey
valorisation
title_short Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
title_full Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
title_fullStr Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
title_full_unstemmed Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
title_sort Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology
author Ribeiro, Susana C
author_facet Ribeiro, Susana C
Silva, Mara
Pflieger, Christian
Barroso, Vitor C
Filipe, Susana
Haertling, Thomas
Madruga, João
Silva, Célia CG
author_role author
author2 Silva, Mara
Pflieger, Christian
Barroso, Vitor C
Filipe, Susana
Haertling, Thomas
Madruga, João
Silva, Célia CG
author2_role author
author
author
author
author
author
author
dc.contributor.author.fl_str_mv Ribeiro, Susana C
Silva, Mara
Pflieger, Christian
Barroso, Vitor C
Filipe, Susana
Haertling, Thomas
Madruga, João
Silva, Célia CG
dc.subject.por.fl_str_mv bacteriocins
cheese whey
valorisation
topic bacteriocins
cheese whey
valorisation
description In the dairy industry, cheese production generates large quantities of liquid whey, the disposal of which is associated with environmental problems. However, cheese whey can be used as a nutrient medium to produce high-value compounds such as bacteriocins through fermentation with lactic acid bacteria (LAB). The application of new efficient methods for the concentration of functional food ingredients can give an important contribution to the valorisation of this subproduct. Therefore, the aim of the present study is to investigate the use of whey to produce bacteriocins by fermentation with bacteriocinogenic LAB and the application of nanofiltration techniques using ceramic membranes as a simple method to obtain bacteriocins. E. faecalis L3B1K3 isolated from an artisanal cheese from the Azores previously showed antimicrobial activity against Listeria spp. and Clostridium spp. by producing a 3 kDa bacteriocin. This strain was used to ferment sweet whey at 30°C for 48 hours. The results showed that sweet whey was a suitable medium to promote both bacterial growth and bacteriocin production. The fermented whey was then subjected to a nanofiltration protocol using a 3 nm ceramic membrane. The measured chemical oxygen demand (COD) increased fourfold (48.4 g/L) in the retentate compared to the initial sample. Bacteriocin activity in the retentate was also increased fourfold compared to fermented whey (12800 AU/mL and 3200 AU/mL, respectively), while no antimicrobial activity was detected in the permeate. The presence of bacteriocin in the whey, retentate and permeate was confirmed by RP-HPLC (retention time of 2.2 minutes). However, the peak area of bacteriocin in the retentate was ten times higher than in the permeate, demonstrating the efficiency of nanofiltration as a concentration method for antibacterial compounds (bacteriocins). In conclusion, these preliminary results have shown that nanofiltration methodologies can overcome the difficulties in recovery and concentrate bacteriocins produced in cheese whey.
publishDate 2023
dc.date.none.fl_str_mv 2023-06-01T00:00:00Z
2024-06-01T15:42:46Z
2024-06-01
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dc.identifier.uri.fl_str_mv http://hdl.handle.net/10174/36938
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dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv S.C. RIBEIRO, M. SILVA, C. PFLIEGER, V. C. BARROSO, S. FILIPE, T. HAERTLING, J. MADRUGA, CÉLIA, C.G. SILVA, Production and recovery of bacteriocins from cheese whey by fermentation and nanofiltration – a first insight using ceramic membrane technology, Bacteriocin International Conference, 2023, Lille, France
https://bic-2023.univ-lille.fr/
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