Mesima, Sanghwang · 2023 · Journal Article
High relevanceIntegrated microbiota and metabolite profiling analysis of prebiotic characteristics of Phellinus linteus polysaccharide in vitro fermentation.
Phellinus linteus
Key points
- Phellinus linteus polysaccharide (PLP) had received increasing attention due to its multiple biological activities
- Herein, the extraction, characterization and in vitro fermentation of PLP were studied to explore its physiochemical properties and the interaction mechanism between the gut microbiota and PLP. The results obtained demonstrated that PLP was mainly composed of 9 monosaccharides, with three gel chromatographic peaks and molecular weights (M w ) of 308.45 kDa, 13.58 kD and 3.33 kDa, respectively
- After 48 h fermentation, the M w, total sugar, reducing sugar, pH and monosaccharides composition were decreased
- Furthermore, PLP regulated the composition of gut microbiota, such as promoting the proliferation of beneficial bacteria such as Bacteroides, Prevotella and Butyricimonas, while preventing the growth of pathogenic bacteria such as Escherichia-Shigella, Morganella and Intestinimonas
- Gut microbiota metabolites regulated by PLP such as short-chain fatty acids were the main regulators that impact the host health
- In conclusion, our finding suggested that PLP may be used as a prebiotic agent for human health because of its ability to regulate gut microbiota
Metadata-grounded summary
Citation abstract
Phellinus linteus polysaccharide (PLP) had received increasing attention due to its multiple biological activities. Herein, the extraction, characterization and in vitro fermentation of PLP were studied to explore its physiochemical properties and the interaction mechanism between the gut microbiota and PLP. The results obtained demonstrated that PLP was mainly composed of 9 monosaccharides, with three gel chromatographic peaks and molecular weights (M w ) of 308.45 kDa, 13.58 kD and 3.33 kDa, respectively. After 48 h fermentation, the M w, total sugar, reducing sugar, pH and monosaccharides composition were decreased. Furthermore, PLP regulated the composition of gut microbiota, such as promoting the proliferation of beneficial bacteria such as Bacteroides, Prevotella and Butyricimonas, while preventing the growth of pathogenic bacteria such as Escherichia-Shigella, Morganella and Intestinimonas. Gut microbiota metabolites regulated by PLP such as short-chain fatty acids were the main regulators that impact the host health. Bioinformatics analysis indicated that butyrate, bile acid and purine metabolism were the main metabolic pathways of PLP regulating host health, and the Bacteroides was the key genus to regulate these metabolic pathways. In conclusion, our finding suggested that PLP may be used as a prebiotic agent for human health because of its ability to regulate gut microbiota.
Citation
Liu T, Zhao M, Zhang Y, Wang Z, Yuan B, Zhao C, et al. (2023). Integrated microbiota and metabolite profiling analysis of prebiotic characteristics of Phellinus linteus polysaccharide in vitro fermentation. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2023.124854 PMID: 37182617
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