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Maitake, Hen of the Woods · 2023 · Journal Article

High relevance

Gastrointestinal metabolism characteristics and mechanism of a polysaccharide from Grifola frondosa.

Grifola frondosa

Immune supportGut & microbiomeLiver support
SpeciesMaitake, Hen of the Woods
JournalInternational journal of biological macromolecules
Year2023

Key points

  • Grifola frondosa polysaccharide (GFP) is mainly composed of α-1,4 glycosidic bonds and possesses multiple pharmacological activities
  • However, the absence of pharmacokinetic studies has limited its further development and utilization
  • Herein, GFP was labeled with 5-DTAF (FGFP) and cyanine 5.5 amine (GFP-Cy5.5) to investigate its gastrointestinal metabolism characteristics and mechanism
  • Significant distributions of the polysaccharide in the liver and kidneys were observed by near infrared imaging
  • To investigate the specific distribution form of the polysaccharide, in vitro digestion models were constructed and revealed that FGFP was degraded in saliva and rat small intestine extract
  • Subsequent investigations showed that α-amylase was involved in the gastrointestinal degradation of GFP, and its metabolite finally entered the kidneys, where it was excreted directly with urine

Metadata-grounded summary

Citation abstract

Grifola frondosa polysaccharide (GFP) is mainly composed of α-1,4 glycosidic bonds and possesses multiple pharmacological activities. However, the absence of pharmacokinetic studies has limited its further development and utilization. Herein, GFP was labeled with 5-DTAF (FGFP) and cyanine 5.5 amine (GFP-Cy5.5) to investigate its gastrointestinal metabolism characteristics and mechanism. Significant distributions of the polysaccharide in the liver and kidneys were observed by near infrared imaging. To investigate the specific distribution form of the polysaccharide, in vitro digestion models were constructed and revealed that FGFP was degraded in saliva and rat small intestine extract. The metabolites were detected in the stomach and small intestine, followed by further degradation in the distal intestine in the in vivo experiment. Subsequent investigations showed that α-amylase was involved in the gastrointestinal degradation of GFP, and its metabolite finally entered the kidneys, where it was excreted directly with urine.

Citation

Zhang Y, Wu N, Wang J, Chen Z, Wu Z, Song M, et al. (2023). Gastrointestinal metabolism characteristics and mechanism of a polysaccharide from Grifola frondosa. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2023.126357 PMID: 37595710

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