Home LiteratureArticle Details
PMID: 21933985 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Responses of gut microbiota and glucose and lipid metabolism to prebiotics in genetic obese and diet-induced leptin-resistant mice.

Diabetes ·Vol. 60 ·No. 11 ·2011-11-00 ·Pages 2775-86

Everard A, Lazarevic V, Derrien M, Girard M, Muccioli GG, Muccioli GM, Neyrinck AM, Possemiers S, Van Holle A, François P, de Vos WM, Delzenne NM, Schrenzel J, Cani PD

Abstract

To investigate deep and comprehensive analysis of gut microbial communities and biological parameters after prebiotic administration in obese and diabetic mice. Genetic (ob/ob) or diet-induced obese and diabetic mice were chronically fed with prebiotic-enriched diet or with a control diet. Extensive gut microbiota analyses, including quantitative PCR, pyrosequencing of the 16S rRNA, and phylogenetic microarrays, were performed in ob/ob mice. The impact of gut microbiota modulation on leptin sensitivity was investigated in diet-induced leptin-resistant mice. Metabolic parameters, gene expression, glucose homeostasis, and enteroendocrine-related L-cell function were documented in both models. In ob/ob mice, prebiotic feeding decreased Firmicutes and increased Bacteroidetes phyla, but also changed 102 distinct taxa, 16 of which displayed a >10-fold change in abundance. In addition, prebiotics improved glucose tolerance, increased L-cell number and associated parameters (intestinal proglucagon mRNA expression and plasma glucagon-like peptide-1 levels), and reduced fat-mass development, oxidative stress, and low-grade inflammation. In high fat-fed mice, prebiotic treatment improved leptin sensitivity as well as metabolic parameters. We conclude that specific gut microbiota modulation improves glucose homeostasis, leptin sensitivity, and target enteroendocrine cell activity in obese and diabetic mice. By profiling the gut microbiota, we identified a catalog of putative bacterial targets that may affect host metabolism in obesity and diabetes.

MeSH Terms
Animals Cecum/microbiology Colon/metabolism,pathology Diabetes Mellitus, Type 2/blood,diet therapy,metabolism,pathology Dietary Fats/adverse effects Enteroendocrine Cells/metabolism,pathology Gene Expression Regulation Glucagon-Like Peptide 1/blood Glucose Intolerance/prevention & control Gram-Negative Bacteria/classification,isolation & purification Gram-Positive Bacteria/classification,isolation & purification Hyperglycemia/prevention & control Hyperlipidemias/prevention & control Leptin/metabolism Mice Mice, Inbred C57BL Mice, Obese Molecular Typing Obesity/blood,diet therapy,metabolism,pathology Prebiotics Proglucagon/genetics,metabolism RNA, Messenger/metabolism
Chemicals
Dietary Fats Leptin Prebiotics RNA, Messenger Proglucagon Glucagon-Like Peptide 1
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Everard Amandine
Metabolism and Nutrition Research Group, Louvain Drug Research Institute, Université Catholique de Louvain, Brussels, Belgium.
Lazarevic Vladimir
Derrien Muriel
Girard Myriam
Muccioli Giulio G
Muccioli Giulio M
Neyrinck Audrey M
Possemiers Sam
Van Holle Ann
François Patrice
de Vos Willem M
Delzenne Nathalie M
Schrenzel Jacques
Cani Patrice D
References (50)
50 references, click to expand
  1. Selective increases of bifidobacteria in gut microflora improve high-fat-diet-induced diabetes in mice through a mechanism associated with endotoxaemia.
    Diabetologia. 2007 Nov;50(11):2374-83 PMID: 17823788
  2. Metabolic syndrome and altered gut microbiota in mice lacking Toll-like receptor 5.
    Science. 2010 Apr 9;328(5975):228-31 PMID: 20203013
  3. Mechanisms underlying the resistance to diet-induced obesity in germ-free mice.
    Proc Natl Acad Sci U S A. 2007 Jan 16;104(3):979-84 PMID: 17210919
  4. Increased intestinal permeability in obese mice: new evidence in the pathogenesis of nonalcoholic steatohepatitis.
    Am J Physiol Gastrointest Liver Physiol. 2007 Feb;292(2):G518-25 PMID: 17023554
  5. A human gut microbial gene catalogue established by metagenomic sequencing.
    Nature. 2010 Mar 4;464(7285):59-65 PMID: 20203603
  6. Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy.
    Appl Environ Microbiol. 2007 Aug;73(16):5261-7 PMID: 17586664
  7. Error-correcting barcoded primers for pyrosequencing hundreds of samples in multiplex.
    Nat Methods. 2008 Mar;5(3):235-7 PMID: 18264105
  8. Obesity alters gut microbial ecology.
    Proc Natl Acad Sci U S A. 2005 Aug 2;102(31):11070-5 PMID: 16033867
  9. CD-HIT Suite: a web server for clustering and comparing biological sequences.
    Bioinformatics. 2010 Mar 1;26(5):680-2 PMID: 20053844
  10. Interactions between gut microbiota, host genetics and diet relevant to development of metabolic syndromes in mice.
    ISME J. 2010 Feb;4(2):232-41 PMID: 19865183
  11. Comparative analysis of pyrosequencing and a phylogenetic microarray for exploring microbial community structures in the human distal intestine.
    PLoS One. 2009 Aug 20;4(8):e6669 PMID: 19693277
  12. Responses of gut microbiota to diet composition and weight loss in lean and obese mice.
    Obesity (Silver Spring). 2012 Apr;20(4):738-47 PMID: 21593810
  13. Changes in gut microbiota control metabolic endotoxemia-induced inflammation in high-fat diet-induced obesity and diabetes in mice.
    Diabetes. 2008 Jun;57(6):1470-81 PMID: 18305141
  14. Intermedilysin, a novel cytotoxin specific for human cells secreted by Streptococcus intermedius UNS46 isolated from a human liver abscess.
    Infect Immun. 1996 Aug;64(8):3093-100 PMID: 8757839
  15. An obesity-associated gut microbiome with increased capacity for energy harvest.
    Nature. 2006 Dec 21;444(7122):1027-31 PMID: 17183312
  16. Composition and energy harvesting capacity of the gut microbiota: relationship to diet, obesity and time in mouse models.
    Gut. 2010 Dec;59(12):1635-42 PMID: 20926643
  17. The gut microbiota as an environmental factor that regulates fat storage.
    Proc Natl Acad Sci U S A. 2004 Nov 2;101(44):15718-23 PMID: 15505215
  18. Interaction between obesity and the gut microbiota: relevance in nutrition.
    Annu Rev Nutr. 2011 Aug 21;31:15-31 PMID: 21568707
  19. The metagenomics RAST server - a public resource for the automatic phylogenetic and functional analysis of metagenomes.
    BMC Bioinformatics. 2008 Sep 19;9:386 PMID: 18803844
  20. Sulfate-reducing bacteria in human feces and their association with inflammatory bowel diseases.
    FEMS Microbiol Ecol. 2002 May 1;40(2):107-12 PMID: 19709217
  21. Microbial ecology: human gut microbes associated with obesity.
    Nature. 2006 Dec 21;444(7122):1022-3 PMID: 17183309
  22. UniFrac--an online tool for comparing microbial community diversity in a phylogenetic context.
    BMC Bioinformatics. 2006 Aug 07;7:371 PMID: 16893466
  23. Gut microbiota composition is associated with body weight, weight gain and biochemical parameters in pregnant women.
    Br J Nutr. 2010 Jul;104(1):83-92 PMID: 20205964
  24. Prebiotic effects: metabolic and health benefits.
    Br J Nutr. 2010 Aug;104 Suppl 2:S1-63 PMID: 20920376
  25. High-fat diet determines the composition of the murine gut microbiome independently of obesity.
    Gastroenterology. 2009 Nov;137(5):1716-24.e1-2 PMID: 19706296
  26. Human gut microbiota in obesity and after gastric bypass.
    Proc Natl Acad Sci U S A. 2009 Feb 17;106(7):2365-70 PMID: 19164560
  27. Diet-induced obesity is linked to marked but reversible alterations in the mouse distal gut microbiome.
    Cell Host Microbe. 2008 Apr 17;3(4):213-23 PMID: 18407065
  28. Macrophages, inflammation, and insulin resistance.
    Annu Rev Physiol. 2010;72:219-46 PMID: 20148674
  29. A core gut microbiome in obese and lean twins.
    Nature. 2009 Jan 22;457(7228):480-4 PMID: 19043404
  30. Improvement of glucose tolerance and hepatic insulin sensitivity by oligofructose requires a functional glucagon-like peptide 1 receptor.
    Diabetes. 2006 May;55(5):1484-90 PMID: 16644709
  31. Correlation of rRNA gene amplicon pyrosequencing and bacterial culture for microbial compositional analysis of faecal samples from elderly Irish subjects.
    J Appl Microbiol. 2011 Aug;111(2):467-73 PMID: 21718396
  32. Study of inter- and intra-individual variations in the salivary microbiota.
    BMC Genomics. 2010 Sep 28;11:523 PMID: 20920195
  33. Inulin-type fructans modulate gastrointestinal peptides involved in appetite regulation (glucagon-like peptide-1 and ghrelin) in rats.
    Br J Nutr. 2004 Sep;92(3):521-6 PMID: 15469657
  34. Increasing endogenous 2-arachidonoylglycerol levels counteracts colitis and related systemic inflammation.
    FASEB J. 2011 Aug;25(8):2711-21 PMID: 21551239
  35. Propensity to high-fat diet-induced obesity in rats is associated with changes in the gut microbiota and gut inflammation.
    Am J Physiol Gastrointest Liver Physiol. 2010 Aug;299(2):G440-8 PMID: 20508158
  36. Development and application of the human intestinal tract chip, a phylogenetic microarray: analysis of universally conserved phylotypes in the abundant microbiota of young and elderly adults.
    Environ Microbiol. 2009 Jul;11(7):1736-51 PMID: 19508560
  37. Changes in gut microbiota control inflammation in obese mice through a mechanism involving GLP-2-driven improvement of gut permeability.
    Gut. 2009 Aug;58(8):1091-103 PMID: 19240062
  38. Inulin-type fructans with prebiotic properties counteract GPR43 overexpression and PPARγ-related adipogenesis in the white adipose tissue of high-fat diet-fed mice.
    J Nutr Biochem. 2011 Aug;22(8):712-22 PMID: 21115338
  39. Metabolic endotoxemia initiates obesity and insulin resistance.
    Diabetes. 2007 Jul;56(7):1761-72 PMID: 17456850
  40. The endocannabinoid system links gut microbiota to adipogenesis.
    Mol Syst Biol. 2010 Jul;6:392 PMID: 20664638
  41. Mucolytic bacteria with increased prevalence in IBD mucosa augment in vitro utilization of mucin by other bacteria.
    Am J Gastroenterol. 2010 Nov;105(11):2420-8 PMID: 20648002
  42. The effect of diet on the human gut microbiome: a metagenomic analysis in humanized gnotobiotic mice.
    Sci Transl Med. 2009 Nov 11;1(6):6ra14 PMID: 20368178
  43. Ecological and evolutionary forces shaping microbial diversity in the human intestine.
    Cell. 2006 Feb 24;124(4):837-48 PMID: 16497592
  44. The Ribosomal Database Project: improved alignments and new tools for rRNA analysis.
    Nucleic Acids Res. 2009 Jan;37(Database issue):D141-5 PMID: 19004872
  45. Dietary non-digestible carbohydrates promote L-cell differentiation in the proximal colon of rats.
    Br J Nutr. 2007 Jul;98(1):32-7 PMID: 17367575
  46. RTX toxin structure and function: a story of numerous anomalies and few analogies in toxin biology.
    Curr Top Microbiol Immunol. 2001;257:85-111 PMID: 11417123
  47. Mechanism of extracellular calcium regulation of intestinal epithelial tight junction permeability: role of cytoskeletal involvement.
    Microsc Res Tech. 2000 Oct 15;51(2):156-68 PMID: 11054866
  48. Microarray analysis and barcoded pyrosequencing provide consistent microbial profiles depending on the source of human intestinal samples.
    Appl Environ Microbiol. 2011 Mar;77(6):2071-80 PMID: 21257804
  49. Altered gut microbiota and endocannabinoid system tone in obese and diabetic leptin-resistant mice: impact on apelin regulation in adipose tissue.
    Front Microbiol. 2011 Jul 13;2:149 PMID: 21808634
  50. MUSCLE: multiple sequence alignment with high accuracy and high throughput.
    Nucleic Acids Res. 2004 Mar 19;32(5):1792-7 PMID: 15034147
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Published
2011-11-00
Epub
2011-00-20
Pages
2775-86
Language
English
Region
United States
NLM ID
0372763
PMCID
PMC3198091
Subset
IM
Corrections
ErratumIn
-
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com