Cargando…

Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota

A variety of bioactive compounds, constituents of edible mushrooms, in particular β-glucans, i.e., a group of β-d-glucose polysaccharides abundant in the fungal cell walls, have been linked to immunomodulating, anticancer and prebiotic activities. The aim of the study was the investigation of the ge...

Descripción completa

Detalles Bibliográficos
Autores principales: Boulaka, Athina, Christodoulou, Paraschos, Vlassopoulou, Marigoula, Koutrotsios, Georgios, Bekiaris, Georgios, Zervakis, Georgios I., Mitsou, Evdokia K., Saxami, Georgia, Kyriacou, Adamantini, Zervou, Maria, Georgiadis, Panagiotis, Pletsa, Vasiliki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7435999/
https://www.ncbi.nlm.nih.gov/pubmed/32759726
http://dx.doi.org/10.3390/molecules25153554
_version_ 1783572452716052480
author Boulaka, Athina
Christodoulou, Paraschos
Vlassopoulou, Marigoula
Koutrotsios, Georgios
Bekiaris, Georgios
Zervakis, Georgios I.
Mitsou, Evdokia K.
Saxami, Georgia
Kyriacou, Adamantini
Zervou, Maria
Georgiadis, Panagiotis
Pletsa, Vasiliki
author_facet Boulaka, Athina
Christodoulou, Paraschos
Vlassopoulou, Marigoula
Koutrotsios, Georgios
Bekiaris, Georgios
Zervakis, Georgios I.
Mitsou, Evdokia K.
Saxami, Georgia
Kyriacou, Adamantini
Zervou, Maria
Georgiadis, Panagiotis
Pletsa, Vasiliki
author_sort Boulaka, Athina
collection PubMed
description A variety of bioactive compounds, constituents of edible mushrooms, in particular β-glucans, i.e., a group of β-d-glucose polysaccharides abundant in the fungal cell walls, have been linked to immunomodulating, anticancer and prebiotic activities. The aim of the study was the investigation of the genoprotective effects of edible mushrooms produced by Pleurotus eryngii, Pleurotus ostreatus and Cyclocybe cylindracea (Basidiomycota). Mushrooms from selected strains of the species mentioned above were fermented in vitro using faecal inocula from healthy volunteers. The cytotoxic and anti-genotoxic properties of the fermentation supernatants (FSs) were investigated in Caco-2 human colon adenocarcinoma cells. The FSs were cytotoxic in a dose-dependent manner. Non-cytotoxic concentrations were used for the genotoxicity studies, which revealed that mushrooms’ FSs have the ability to protect Caco-2 cells against tert-butyl hydroperoxide (t-BOOH), a known genotoxic agent. Their global metabolic profiling was assessed by (1)H-NMR spectroscopy. A total of 37 metabolites were identified with the use of two-dimensional (2D) homo- and hetero-nuclear NMR experiments. Multivariate data analysis monitored the metabolic variability of gut microbiota and probed to biomarkers potentially associated with the health-promoting effects of edible mushrooms.
format Online
Article
Text
id pubmed-7435999
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74359992020-08-24 Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota Boulaka, Athina Christodoulou, Paraschos Vlassopoulou, Marigoula Koutrotsios, Georgios Bekiaris, Georgios Zervakis, Georgios I. Mitsou, Evdokia K. Saxami, Georgia Kyriacou, Adamantini Zervou, Maria Georgiadis, Panagiotis Pletsa, Vasiliki Molecules Article A variety of bioactive compounds, constituents of edible mushrooms, in particular β-glucans, i.e., a group of β-d-glucose polysaccharides abundant in the fungal cell walls, have been linked to immunomodulating, anticancer and prebiotic activities. The aim of the study was the investigation of the genoprotective effects of edible mushrooms produced by Pleurotus eryngii, Pleurotus ostreatus and Cyclocybe cylindracea (Basidiomycota). Mushrooms from selected strains of the species mentioned above were fermented in vitro using faecal inocula from healthy volunteers. The cytotoxic and anti-genotoxic properties of the fermentation supernatants (FSs) were investigated in Caco-2 human colon adenocarcinoma cells. The FSs were cytotoxic in a dose-dependent manner. Non-cytotoxic concentrations were used for the genotoxicity studies, which revealed that mushrooms’ FSs have the ability to protect Caco-2 cells against tert-butyl hydroperoxide (t-BOOH), a known genotoxic agent. Their global metabolic profiling was assessed by (1)H-NMR spectroscopy. A total of 37 metabolites were identified with the use of two-dimensional (2D) homo- and hetero-nuclear NMR experiments. Multivariate data analysis monitored the metabolic variability of gut microbiota and probed to biomarkers potentially associated with the health-promoting effects of edible mushrooms. MDPI 2020-08-04 /pmc/articles/PMC7435999/ /pubmed/32759726 http://dx.doi.org/10.3390/molecules25153554 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
Boulaka, Athina
Christodoulou, Paraschos
Vlassopoulou, Marigoula
Koutrotsios, Georgios
Bekiaris, Georgios
Zervakis, Georgios I.
Mitsou, Evdokia K.
Saxami, Georgia
Kyriacou, Adamantini
Zervou, Maria
Georgiadis, Panagiotis
Pletsa, Vasiliki
Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title_full Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title_fullStr Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title_full_unstemmed Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title_short Genoprotective Properties and Metabolites of β-Glucan-Rich Edible Mushrooms Following Their In Vitro Fermentation by Human Faecal Microbiota
title_sort genoprotective properties and metabolites of β-glucan-rich edible mushrooms following their in vitro fermentation by human faecal microbiota
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7435999/
https://www.ncbi.nlm.nih.gov/pubmed/32759726
http://dx.doi.org/10.3390/molecules25153554
work_keys_str_mv AT boulakaathina genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT christodoulouparaschos genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT vlassopouloumarigoula genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT koutrotsiosgeorgios genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT bekiarisgeorgios genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT zervakisgeorgiosi genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT mitsouevdokiak genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT saxamigeorgia genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT kyriacouadamantini genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT zervoumaria genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT georgiadispanagiotis genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota
AT pletsavasiliki genoprotectivepropertiesandmetabolitesofbglucanrichediblemushroomsfollowingtheirinvitrofermentationbyhumanfaecalmicrobiota