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Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant

Background: We aimed to gain insights in a co-culture of 10 bacteria and their postbiotic supernatant. Methods: Abundances and gene expression were monitored by shotgun analysis. The supernatant was characterized by liquid chromatography mass spectroscopy (LC-MS) and gas chromatography mass spectros...

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Autores principales: Kienesberger, Bernhard, Obermüller, Beate, Singer, Georg, Arneitz, Christoph, Gasparella, Paolo, Klymiuk, Ingeborg, Horvath, Angela, Stadlbauer, Vanessa, Magnes, Christoph, Zügner, Elmar, López-García, Pablo, Trajanoski, Slave, Miekisch, Wolfram, Fuchs, Patricia, Till, Holger, Castellani, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8952306/
https://www.ncbi.nlm.nih.gov/pubmed/35334850
http://dx.doi.org/10.3390/nu14061194
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author Kienesberger, Bernhard
Obermüller, Beate
Singer, Georg
Arneitz, Christoph
Gasparella, Paolo
Klymiuk, Ingeborg
Horvath, Angela
Stadlbauer, Vanessa
Magnes, Christoph
Zügner, Elmar
López-García, Pablo
Trajanoski, Slave
Miekisch, Wolfram
Fuchs, Patricia
Till, Holger
Castellani, Christoph
author_facet Kienesberger, Bernhard
Obermüller, Beate
Singer, Georg
Arneitz, Christoph
Gasparella, Paolo
Klymiuk, Ingeborg
Horvath, Angela
Stadlbauer, Vanessa
Magnes, Christoph
Zügner, Elmar
López-García, Pablo
Trajanoski, Slave
Miekisch, Wolfram
Fuchs, Patricia
Till, Holger
Castellani, Christoph
author_sort Kienesberger, Bernhard
collection PubMed
description Background: We aimed to gain insights in a co-culture of 10 bacteria and their postbiotic supernatant. Methods: Abundances and gene expression were monitored by shotgun analysis. The supernatant was characterized by liquid chromatography mass spectroscopy (LC-MS) and gas chromatography mass spectroscopy (GC-MS). Supernatant was harvested after 48 h (S48) and 196 h (S196). Susceptibility testing included nine bacteria and C. albicans. Bagg albino (BALBc) mice were fed with supernatant or culture medium. Fecal samples were obtained for 16S analysis. Results: A time-dependent decrease of the relative abundances and gene expression of L. salivarius, L. paracasei, E. faecium and B. longum/lactis and an increase of L. plantarum were observed. Substances in LC-MS were predominantly allocated to groups amino acids/peptides/metabolites and nucleotides/metabolites, relating to gene expression. Fumaric, panthotenic, 9,3-methyl-2-oxovaleric, malic and aspartic acid, cytidine monophosphate, orotidine, phosphoserine, creatine, tryptophan correlated to culture time. Supernatant had no effect against anaerobic bacteria. S48 was reactive against S. epidermidis, L. monocytogenes, P. aeruginosae, E. faecium and C. albicans. S196 against S. epidermidis and Str. agalactiae. In vivo S48/S196 had no effect on alpha/beta diversity. Linear discriminant analysis effect size (LEfSe) and analysis of composition of microbiomes (ANCOM) revealed an increase of Anaeroplasma and Faecalibacterium prausnitzii. Conclusions: The postbiotic supernatant had positive antibacterial and antifungal effects in vitro and promoted the growth of distinct bacteria in vivo.
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spelling pubmed-89523062022-03-26 Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant Kienesberger, Bernhard Obermüller, Beate Singer, Georg Arneitz, Christoph Gasparella, Paolo Klymiuk, Ingeborg Horvath, Angela Stadlbauer, Vanessa Magnes, Christoph Zügner, Elmar López-García, Pablo Trajanoski, Slave Miekisch, Wolfram Fuchs, Patricia Till, Holger Castellani, Christoph Nutrients Article Background: We aimed to gain insights in a co-culture of 10 bacteria and their postbiotic supernatant. Methods: Abundances and gene expression were monitored by shotgun analysis. The supernatant was characterized by liquid chromatography mass spectroscopy (LC-MS) and gas chromatography mass spectroscopy (GC-MS). Supernatant was harvested after 48 h (S48) and 196 h (S196). Susceptibility testing included nine bacteria and C. albicans. Bagg albino (BALBc) mice were fed with supernatant or culture medium. Fecal samples were obtained for 16S analysis. Results: A time-dependent decrease of the relative abundances and gene expression of L. salivarius, L. paracasei, E. faecium and B. longum/lactis and an increase of L. plantarum were observed. Substances in LC-MS were predominantly allocated to groups amino acids/peptides/metabolites and nucleotides/metabolites, relating to gene expression. Fumaric, panthotenic, 9,3-methyl-2-oxovaleric, malic and aspartic acid, cytidine monophosphate, orotidine, phosphoserine, creatine, tryptophan correlated to culture time. Supernatant had no effect against anaerobic bacteria. S48 was reactive against S. epidermidis, L. monocytogenes, P. aeruginosae, E. faecium and C. albicans. S196 against S. epidermidis and Str. agalactiae. In vivo S48/S196 had no effect on alpha/beta diversity. Linear discriminant analysis effect size (LEfSe) and analysis of composition of microbiomes (ANCOM) revealed an increase of Anaeroplasma and Faecalibacterium prausnitzii. Conclusions: The postbiotic supernatant had positive antibacterial and antifungal effects in vitro and promoted the growth of distinct bacteria in vivo. MDPI 2022-03-11 /pmc/articles/PMC8952306/ /pubmed/35334850 http://dx.doi.org/10.3390/nu14061194 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kienesberger, Bernhard
Obermüller, Beate
Singer, Georg
Arneitz, Christoph
Gasparella, Paolo
Klymiuk, Ingeborg
Horvath, Angela
Stadlbauer, Vanessa
Magnes, Christoph
Zügner, Elmar
López-García, Pablo
Trajanoski, Slave
Miekisch, Wolfram
Fuchs, Patricia
Till, Holger
Castellani, Christoph
Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title_full Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title_fullStr Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title_full_unstemmed Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title_short Insights into the Composition of a Co-Culture of 10 Probiotic Strains (OMNi BiOTiC(®) AAD10) and Effects of Its Postbiotic Culture Supernatant
title_sort insights into the composition of a co-culture of 10 probiotic strains (omni biotic(®) aad10) and effects of its postbiotic culture supernatant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8952306/
https://www.ncbi.nlm.nih.gov/pubmed/35334850
http://dx.doi.org/10.3390/nu14061194
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