Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study
Alterations of gut microbiota are evident during the aging process. Prebiotics may restore the gut microbial balance, with β-glucans emerging as prebiotic candidates. This study aimed to investigate the impact of edible mushrooms rich in β-glucans on the gut microbiota composition and metabolites by...
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doaj-f9daf56ffbcc46fc8603342d054d13312020-11-25T02:28:52ZengMDPI AGMolecules1420-30492020-06-01252806280610.3390/molecules25122806Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro StudyEvdokia K. Mitsou0Georgia Saxami1Emmanuela Stamoulou2Evangelia Kerezoudi3Eirini Terzi4Georgios Koutrotsios5Georgios Bekiaris6Georgios I. Zervakis7Konstantinos C. Mountzouris8Vasiliki Pletsa9Adamantini Kyriacou10Department of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceDepartment of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceDepartment of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceDepartment of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceDepartment of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceLaboratory of General and Agricultural Microbiology, Department of Crop Science, Agricultural University of Athens, 11855 Athens, GreeceLaboratory of General and Agricultural Microbiology, Department of Crop Science, Agricultural University of Athens, 11855 Athens, GreeceLaboratory of General and Agricultural Microbiology, Department of Crop Science, Agricultural University of Athens, 11855 Athens, GreeceDepartment of Nutritional Physiology and Feeding, Agricultural University of Athens, 11855 Athens, GreeceInstitute of Chemical Biology, National Hellenic Research Foundation, 11635 Athens, GreeceDepartment of Nutrition and Dietetics, Harokopio University, 17671 Athens, GreeceAlterations of gut microbiota are evident during the aging process. Prebiotics may restore the gut microbial balance, with β-glucans emerging as prebiotic candidates. This study aimed to investigate the impact of edible mushrooms rich in β-glucans on the gut microbiota composition and metabolites by using in vitro static batch culture fermentations and fecal inocula from elderly donors (n = 8). <i>Pleurotus ostreatus</i>, <i>P. eryngii</i>, <i>Hericium erinaceus</i> and <i>Cyclocybe cylindracea</i> mushrooms derived from various substrates were examined. Gut microbiota composition (quantitative PCR (qPCR)) and short-chain fatty acids (SCFAs; gas chromatography (GC)) were determined during the 24-h fermentation. <i>P. eryngii</i> induced a strong lactogenic effect, while <i>P. ostreatus</i> and <i>C. cylindracea</i> induced a significant bifidogenic effect (<i>p</i> for all <0.05). Furthermore, <i>P. eryngii</i> produced on wheat straw and the prebiotic inulin had comparable Prebiotic Indexes, while <i>P. eryngii</i> produced on wheat straw/grape marc significantly increased the levels of tested butyrate producers. <i>P. ostreatus</i>, <i>P. eryngii</i> and <i>C. cylindracea</i> had similar trends in SCFA profile; <i>H. erinaceus</i> mushrooms were more diverse, especially in the production of propionate, butyrate and branched SCFAs. In conclusion, mushrooms rich in β-glucans may exert beneficial in vitro effects in gut microbiota and/or SCFAs production in elderly subjects.https://www.mdpi.com/1420-3049/25/12/2806gut microbiotaSCFAsagingprebioticsβ-glucansedible mushroom |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Evdokia K. Mitsou Georgia Saxami Emmanuela Stamoulou Evangelia Kerezoudi Eirini Terzi Georgios Koutrotsios Georgios Bekiaris Georgios I. Zervakis Konstantinos C. Mountzouris Vasiliki Pletsa Adamantini Kyriacou |
spellingShingle |
Evdokia K. Mitsou Georgia Saxami Emmanuela Stamoulou Evangelia Kerezoudi Eirini Terzi Georgios Koutrotsios Georgios Bekiaris Georgios I. Zervakis Konstantinos C. Mountzouris Vasiliki Pletsa Adamantini Kyriacou Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study Molecules gut microbiota SCFAs aging prebiotics β-glucans edible mushroom |
author_facet |
Evdokia K. Mitsou Georgia Saxami Emmanuela Stamoulou Evangelia Kerezoudi Eirini Terzi Georgios Koutrotsios Georgios Bekiaris Georgios I. Zervakis Konstantinos C. Mountzouris Vasiliki Pletsa Adamantini Kyriacou |
author_sort |
Evdokia K. Mitsou |
title |
Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study |
title_short |
Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study |
title_full |
Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study |
title_fullStr |
Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study |
title_full_unstemmed |
Effects of Rich in Β-Glucans Edible Mushrooms on Aging Gut Microbiota Characteristics: An In Vitro Study |
title_sort |
effects of rich in β-glucans edible mushrooms on aging gut microbiota characteristics: an in vitro study |
publisher |
MDPI AG |
series |
Molecules |
issn |
1420-3049 |
publishDate |
2020-06-01 |
description |
Alterations of gut microbiota are evident during the aging process. Prebiotics may restore the gut microbial balance, with β-glucans emerging as prebiotic candidates. This study aimed to investigate the impact of edible mushrooms rich in β-glucans on the gut microbiota composition and metabolites by using in vitro static batch culture fermentations and fecal inocula from elderly donors (n = 8). <i>Pleurotus ostreatus</i>, <i>P. eryngii</i>, <i>Hericium erinaceus</i> and <i>Cyclocybe cylindracea</i> mushrooms derived from various substrates were examined. Gut microbiota composition (quantitative PCR (qPCR)) and short-chain fatty acids (SCFAs; gas chromatography (GC)) were determined during the 24-h fermentation. <i>P. eryngii</i> induced a strong lactogenic effect, while <i>P. ostreatus</i> and <i>C. cylindracea</i> induced a significant bifidogenic effect (<i>p</i> for all <0.05). Furthermore, <i>P. eryngii</i> produced on wheat straw and the prebiotic inulin had comparable Prebiotic Indexes, while <i>P. eryngii</i> produced on wheat straw/grape marc significantly increased the levels of tested butyrate producers. <i>P. ostreatus</i>, <i>P. eryngii</i> and <i>C. cylindracea</i> had similar trends in SCFA profile; <i>H. erinaceus</i> mushrooms were more diverse, especially in the production of propionate, butyrate and branched SCFAs. In conclusion, mushrooms rich in β-glucans may exert beneficial in vitro effects in gut microbiota and/or SCFAs production in elderly subjects. |
topic |
gut microbiota SCFAs aging prebiotics β-glucans edible mushroom |
url |
https://www.mdpi.com/1420-3049/25/12/2806 |
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