journal article Open Access Jan 01, 2020

Role of gut microbiota in type 2 diabetes pathophysiology

EBioMedicine Vol. 51 pp. 102590 · Elsevier BV
View at Publisher Save 10.1016/j.ebiom.2019.11.051
Topics

No keywords indexed for this article. Browse by subject →

References
129
[1]
Regional variation limits applications of healthy gut microbiome reference ranges and disease models

Yan He, Wei Wu, Hui-Min Zheng et al.

Nature Medicine 2018 10.1038/s41591-018-0164-x
[2]
Gao "Dysbiosis signatures of gut microbiota along the sequence from healthy, young patients to those with overweight and obesity" Obesity (Silver Spring) (2018) 10.1002/oby.22088
[3]
Candela "Modulation of gut microbiota dysbioses in type 2 diabetic patients by macrobiotic Ma-Pi 2 diet" Br J Nutr (2016) 10.1017/s0007114516001045
[4]
Sedighi "Comparison of gut microbiota in adult patients with type 2 diabetes and healthy individuals" Microb Pathog (2017) 10.1016/j.micpath.2017.08.038
[5]
Wu "Molecular characterisation of the faecal microbiota in patients with type II diabetes" Curr Microbiol (2010) 10.1007/s00284-010-9582-9
[7]
Barengolts "Gut microbiota varies by opioid use, circulating leptin and oxytocin in African American men with diabetes and high burden of chronic disease" PLoS ONE (2018) 10.1371/journal.pone.0194171
[8]
Xu "Structural modulation of gut microbiota during alleviation of type 2 diabetes with a Chinese herbal formula" ISME J (2015) 10.1038/ismej.2014.177
[9]
Pedersen "Host-microbiome interactions in human type 2 diabetes following prebiotic fibre (galacto-oligosaccharide) intake" Br J Nutr (2016) 10.1017/s0007114516004086
[10]
Sasaki "Transglucosidase improves the gut microbiota profile of type 2 diabetes mellitus patients: a randomized double-blind, placebo-controlled study" BMC Gastroenterol (2013) 10.1186/1471-230x-13-81
[11]
Murphy "Differential changes in gut microbiota after gastric bypass and sleeve gastrectomy bariatric surgery vary according to diabetes remission" Obes Surg (2017) 10.1007/s11695-016-2399-2
[12]
Le "Bifidobacterium species lower serum glucose, increase expressions of insulin signaling proteins, and improve adipokine profile in diabetic mice" Biomed Res (2015) 10.2220/biomedres.36.63
[13]
Moya-Perez "Bifidobacterium pseudocatenulatum CECT 7765 reduces obesity-associated inflammation by restoring the lymphocyte-macrophage balance and gut microbiota structure in high-fat diet-fed mice" PLoS ONE (2015) 10.1371/journal.pone.0126976
[14]
Kikuchi "Sterilized bifidobacteria suppressed fat accumulation and blood glucose level" Biochem Biophys Res Commun (2018) 10.1016/j.bbrc.2018.05.105
[15]
Aoki "A proliferative probiotic bifidobacterium strain in the gut ameliorates progression of metabolic disorders via microbiota modulation and acetate elevation" Sci Rep (2017) 10.1038/srep43522
[16]
Wang "Modulation of gut microbiota during probiotic-mediated attenuation of metabolic syndrome in high fat diet-fed mice" ISME J (2015) 10.1038/ismej.2014.99
[17]
Zhang "Human gut microbiota changes reveal the progression of glucose intolerance" PLoS ONE (2013) 10.1371/journal.pone.0071108
[18]
Lippert "Gut microbiota dysbiosis associated with glucose metabolism disorders and the metabolic syndrome in older adults" Benef Microbes (2017) 10.3920/bm2016.0184
[19]
Yamaguchi "Association of intestinal microbiota with metabolic markers and dietary habits in patients with type 2 diabetes" Digestion (2016) 10.1159/000447690
[20]
Munukka "Women with and without metabolic disorder differ in their gut microbiota composition" Obesity (2012) 10.1038/oby.2012.8
[21]
Gut microbiota and intestinal FXR mediate the clinical benefits of metformin

Lulu Sun, Cen Xie, Guang Wang et al.

Nature Medicine 2018 10.1038/s41591-018-0222-4
[22]
Malik "Is metformin poised for a second career as an antimicrobial?" Diabetes Metab Res Rev (2018) 10.1002/dmrr.2975
[23]
He "Linking gut microbiota, metabolic syndrome and economic status based on a population-level analysis" Microbiome (2018) 10.1186/s40168-018-0557-6
[24]
Gut metagenome in European women with normal, impaired and diabetic glucose control

Fredrik H. Karlsson, Valentina Tremaroli, Intawat Nookaew et al.

Nature 2013 10.1038/nature12198
[25]
Yang "Gut commensal bacteroides acidifaciens prevents obesity and improves insulin sensitivity in mice" Mucosal Immunol (2017) 10.1038/mi.2016.42
[26]
Cano "Bacteroides uniformis CECT 7771 ameliorates metabolic and immunological dysfunction in mice with high-fat-diet induced obesity" PLoS ONE (2012) 10.1371/journal.pone.0041079
[27]
Larsen "Gut microbiota in human adults with type 2 diabetes differs from non-diabetic adults" PLoS ONE (2010) 10.1371/journal.pone.0009085
[28]
Salamon "Characteristics of gut microbiota in adult patients with type 1 and type 2 diabetes based on nextgeneration sequencing of the 16S rRNA gene fragment" Pol Arch Intern Med (2018)
[29]
Forslund "Disentangling type 2 diabetes and metformin treatment signatures in the human gut microbiota" Nature (2015) 10.1038/nature15766
[30]
Tong "Structural alteration of gut microbiota during the amelioration of human type 2 diabetes with hyperlipidemia by metformin and a traditional Chinese herbal formula: a multicenter, randomized, open label clinical trial" MBio (2018) 10.1128/mbio.02392-17
[31]
Patrone "Postoperative changes in fecal bacterial communities and fermentation products in obese patients undergoing bilio-intestinal bypass" Front Microbiol (2016) 10.3389/fmicb.2016.00200
[32]
Remely "Effects of short chain fatty acid producing bacteria on epigenetic regulation of FFAR3 in type 2 diabetes and obesity" Gene (2014) 10.1016/j.gene.2013.11.081
[33]
Furet "Differential adaptation of human gut microbiota to bariatric surgery-induced weight loss: links with metabolic and low-grade inflammation markers" Diabetes (2010) 10.2337/db10-0253
[34]
Graessler "Metagenomic sequencing of the human gut microbiome before and after bariatric surgery in obese patients with type 2 diabetes: correlation with inflammatory and metabolic parameters" Pharmacogenomics J (2013) 10.1038/tpj.2012.43
[35]
Rossi "Faecalibacterium prausnitzii strain HTF-F and its extracellular polymeric matrix attenuate clinical parameters in DSS-Induced colitis" PLoS ONE (2015) 10.1371/journal.pone.0123013
[36]
Munukka "Faecalibacterium prausnitzii treatment improves hepatic health and reduces adipose tissue inflammation in high-fat fed mice" ISME J (2017) 10.1038/ismej.2017.24
[37]
Plovier "A purified membrane protein from Akkermansia muciniphila or the pasteurized bacterium improves metabolism in obese and diabetic mice" Nat Med (2017) 10.1038/nm.4236
[38]
Greer "Akkermansia muciniphila mediates negative effects of IFNgamma on glucose metabolism" Nat Commun (2016) 10.1038/ncomms13329
[39]
Cross-talk between Akkermansia muciniphila and intestinal epithelium controls diet-induced obesity

Amandine Everard, Clara Belzer, Lucie Geurts et al.

Proceedings of the National Academy of Sciences 2013 10.1073/pnas.1219451110
[40]
Zhao "Akkermansia muciniphila improves metabolic profiles by reducing inflammation in chow diet-fed mice" J Mol Endocrinol (2017) 10.1530/jme-16-0054
[41]
Hanninen "Akkermansia muciniphila induces gut microbiota remodelling and controls islet autoimmunity in nod mice" Gut (2018) 10.1136/gutjnl-2017-314508
[42]
Chelakkot "Akkermansia muciniphila-derived extracellular vesicles influence gut permeability through the regulation of tight junctions" Exp Mol Med (2018) 10.1038/emm.2017.282
[43]
Ni "Characteristics of gut microbiota and its response to a Chinese herbal formula in elder patients with metabolic syndrome" Drug Discov Ther (2018) 10.5582/ddt.2018.01036
[44]
Martinic "Supplementation of lactobacillus plantarum improves markers of metabolic dysfunction induced by a high fat diet" J Proteome Res (2018) 10.1021/acs.jproteome.8b00282
[45]
Lee "Lactobacillus plantarum strain Ln4 attenuates diet-induced obesity, insulin resistance, and changes in hepatic mRNA levels associated with glucose and lipid metabolism" Nutrients (2018) 10.3390/nu10050643
[46]
Balakumar "Improvement in glucose tolerance and insulin sensitivity by probiotic strains of Indian gut origin in high-fat diet-fed C57BL/6J mice" Eur J Nutr (2018) 10.1007/s00394-016-1317-7
[47]
Okubo "KK/Ta mice administered lactobacillus plantarum strain no. 14 have lower adiposity and higher insulin sensitivity" Biosci Microbiota Food Health (2013) 10.12938/bmfh.32.93
[48]
Fak "Lactobacillus reuteri prevents diet-induced obesity, but not atherosclerosis, in a strain dependent fashion in Apoe-/- mice" PLoS ONE (2012) 10.1371/journal.pone.0046837
[49]
Naito "Beneficial effect of oral administration of lactobacillus casei strain shirota on insulin resistance in diet-induced obesity mice" J Appl Microbiol (2011) 10.1111/j.1365-2672.2010.04922.x
[50]
Park "Supplementation of lactobacillus curvatus HY7601 and lactobacillus plantarum KY1032 in diet-induced obese mice is associated with gut microbial changes and reduction in obesity" PLoS ONE (2013) 10.1371/journal.pone.0059470

Showing 50 of 129 references

Cited By
1,478
Trends in Endocrinology & Metab...
Frontiers in Endocrinology
Nature Reviews Endocrinology
Frontiers in Aging
A gut feeling of statin

Jianqing She, Lizhe Sun · 2024

Gut Microbes
Journal of Gastroenterology and Hep...
Metrics
1,478
Citations
129
References
Details
Published
Jan 01, 2020
Vol/Issue
51
Pages
102590
License
View
Funding
National Institute of Diabetes and Digestive and Kidney Diseases
Cite This Article
Manoj Gurung, Zhipeng Li, Hannah You, et al. (2020). Role of gut microbiota in type 2 diabetes pathophysiology. EBioMedicine, 51, 102590. https://doi.org/10.1016/j.ebiom.2019.11.051
Related

You May Also Like

Biological Age Predictors

Juulia Jylhävä, Nancy L. Pedersen · 2017

1,119 citations

Cellular Senescence: A Translational Perspective

James L. Kirkland, Tamara Tchkonia · 2017

911 citations

Fisetin is a senotherapeutic that extends health and lifespan

Matthew J. Yousefzadeh, Yi Zhu · 2018

890 citations