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Fructooligosaccharide (FOS) and Galactooligosaccharide (GOS) Increase Bifidobacterium but Reduce Butyrate Producing Bacteria with Adverse Glycemic Metabolism in healthy young population
by
Qi, Qi
, Prabhakar, M
, He, Yan
, Zhou, Hongwei
, Chen, Muxuan
, Zhang, Yi
, Sheng, Huafang
, Liu, Feitong
, Zheng, Huimin
, Long, Haoyu
, Li, Pan
, Luo, Yuemei
in
631/326/107
/ 692/4020/2741/2135
/ 692/699/2743/2815
/ Adolescent
/ Adult
/ Aged
/ Bacteria
/ Bifidobacterium - metabolism
/ Blood glucose
/ Blood Glucose - metabolism
/ Butyrates - metabolism
/ Clinical trials
/ Diabetes mellitus
/ Digestive system
/ Double-Blind Method
/ Female
/ Fructooligosaccharides
/ Galactooligosaccharides
/ Gastrointestinal Microbiome - drug effects
/ Gastrointestinal tract
/ Glucose
/ Glucose metabolism
/ Glucose tolerance
/ Humanities and Social Sciences
/ Humans
/ Intervention
/ Intestinal microflora
/ Intestine
/ Intolerance
/ Male
/ Metabolism
/ Middle Aged
/ multidisciplinary
/ Oligosaccharides - pharmacokinetics
/ Oligosaccharides - pharmacology
/ Prebiotics
/ Relative abundance
/ Ruminococcus - metabolism
/ Science
/ Science (multidisciplinary)
/ Side effects
2017
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Fructooligosaccharide (FOS) and Galactooligosaccharide (GOS) Increase Bifidobacterium but Reduce Butyrate Producing Bacteria with Adverse Glycemic Metabolism in healthy young population
by
Qi, Qi
, Prabhakar, M
, He, Yan
, Zhou, Hongwei
, Chen, Muxuan
, Zhang, Yi
, Sheng, Huafang
, Liu, Feitong
, Zheng, Huimin
, Long, Haoyu
, Li, Pan
, Luo, Yuemei
in
631/326/107
/ 692/4020/2741/2135
/ 692/699/2743/2815
/ Adolescent
/ Adult
/ Aged
/ Bacteria
/ Bifidobacterium - metabolism
/ Blood glucose
/ Blood Glucose - metabolism
/ Butyrates - metabolism
/ Clinical trials
/ Diabetes mellitus
/ Digestive system
/ Double-Blind Method
/ Female
/ Fructooligosaccharides
/ Galactooligosaccharides
/ Gastrointestinal Microbiome - drug effects
/ Gastrointestinal tract
/ Glucose
/ Glucose metabolism
/ Glucose tolerance
/ Humanities and Social Sciences
/ Humans
/ Intervention
/ Intestinal microflora
/ Intestine
/ Intolerance
/ Male
/ Metabolism
/ Middle Aged
/ multidisciplinary
/ Oligosaccharides - pharmacokinetics
/ Oligosaccharides - pharmacology
/ Prebiotics
/ Relative abundance
/ Ruminococcus - metabolism
/ Science
/ Science (multidisciplinary)
/ Side effects
2017
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Fructooligosaccharide (FOS) and Galactooligosaccharide (GOS) Increase Bifidobacterium but Reduce Butyrate Producing Bacteria with Adverse Glycemic Metabolism in healthy young population
by
Qi, Qi
, Prabhakar, M
, He, Yan
, Zhou, Hongwei
, Chen, Muxuan
, Zhang, Yi
, Sheng, Huafang
, Liu, Feitong
, Zheng, Huimin
, Long, Haoyu
, Li, Pan
, Luo, Yuemei
in
631/326/107
/ 692/4020/2741/2135
/ 692/699/2743/2815
/ Adolescent
/ Adult
/ Aged
/ Bacteria
/ Bifidobacterium - metabolism
/ Blood glucose
/ Blood Glucose - metabolism
/ Butyrates - metabolism
/ Clinical trials
/ Diabetes mellitus
/ Digestive system
/ Double-Blind Method
/ Female
/ Fructooligosaccharides
/ Galactooligosaccharides
/ Gastrointestinal Microbiome - drug effects
/ Gastrointestinal tract
/ Glucose
/ Glucose metabolism
/ Glucose tolerance
/ Humanities and Social Sciences
/ Humans
/ Intervention
/ Intestinal microflora
/ Intestine
/ Intolerance
/ Male
/ Metabolism
/ Middle Aged
/ multidisciplinary
/ Oligosaccharides - pharmacokinetics
/ Oligosaccharides - pharmacology
/ Prebiotics
/ Relative abundance
/ Ruminococcus - metabolism
/ Science
/ Science (multidisciplinary)
/ Side effects
2017
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Fructooligosaccharide (FOS) and Galactooligosaccharide (GOS) Increase Bifidobacterium but Reduce Butyrate Producing Bacteria with Adverse Glycemic Metabolism in healthy young population
Journal Article
Fructooligosaccharide (FOS) and Galactooligosaccharide (GOS) Increase Bifidobacterium but Reduce Butyrate Producing Bacteria with Adverse Glycemic Metabolism in healthy young population
2017
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Overview
The gut microbiota has been implicated in glucose intolerance and its progression towards type-2 diabetes mellitus (T2DM). Relevant randomized clinical trial with prebiotic intervention was inadequate. We sought to evaluate the impact of fructooligosaccharides (FOS) and galactooligosaccharides (GOS) on glycemia during oral glucose tolerance test (OGTT) and intestinal microbiota. A randomized double-blind cross-over study was performed with 35 adults treated with FOS and GOS for 14 days (16 g/day). Faeces sampling, OGTT and anthropometric parameters were performed. Short-term intake of high-dose prebiotics had adverse effect on glucose metabolism, as in FOS intervention demonstrated by OGTT (P < 0.001), and in GOS intervention demonstrated by fasting glucose (P < 0.05). A significant increase in the relative abundance of
Bifidobacterium
was observed both in FOS and GOS group, while the butyrate-producing bacteria like
Phascolarctobacterium
in FOS group and
Ruminococcus
in GOS group were decreased. A random forest model using the initial microbiota was developed to predict OGTT levels after prebiotic intervention with relative success (R = 0.726). Our study alerted even though FOS and GOS increased
Bifidobacterium
, they might have adverse effect on glucose metabolism by reducing butyrate-producing microbes. Individualized prebiotics intervention based on gut microbiome needs to be evaluated in future.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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