Gut Microbiome Dysbiosis and Immunometabolism: New Frontiers for Treatment of Metabolic Diseases

被引:205
作者
Belizario, Jose E. [1 ]
Faintuch, Joel [2 ]
Garay-Malpartida, Miguel [3 ]
机构
[1] Univ Sao Paulo, Inst Biomed Sci, Dept Pharmacol, BR-05508900 Sao Paulo, SP, Brazil
[2] Univ Sao Paulo, Med Sch, Dept Gastroenterol, BR-05403000 Sao Paulo, SP, Brazil
[3] Univ Sao Paulo, Sch Arts Sci & Humanities EACH, BR-03828000 Sao Paulo, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
CHAIN FATTY-ACIDS; INTESTINAL MICROBIOTA; SUCCINATE-DEHYDROGENASE; DENDRITIC CELL; IMMUNE-SYSTEM; OBESITY; IMPACT; DIET; BACTERIOTHERAPY; ACTIVATION;
D O I
10.1155/2018/2037838
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Maintenance of healthy human metabolism depends on a symbiotic consortium among bacteria, archaea, viruses, fungi, and host eukaryotic cells throughout the human gastrointestinal tract. Microbial communities provide the enzymatic machinery and the metabolic pathways that contribute to food digestion, xenobiotic metabolism, and production of a variety of bioactive molecules. These include vitamins, amino acids, short-chain fatty acids (SCFAs), and metabolites, which are essential for the interconnected pathways of glycolysis, the tricarboxylic acid/Krebs cycle, oxidative phosphorylation (OXPHOS), and amino acid and fatty acid metabolism. Recent studies have been elucidating how nutrients that fuel the metabolic processes impact on the ways immune cells, in particular, macrophages, respond to different stimuli under physiological and pathological conditions and become activated and acquire a specialized function. The two major inflammatory phenotypes of macrophages are controlled through differential consumption of glucose, glutamine, and oxygen. M1 phenotype is triggered by polarization signal from bacterial lipopolysaccharide (LPS) and Th1 proinflammatory cytokines such as interferon-gamma, TNF-alpha, and IL-1 beta, or both, whereas M2 phenotype is triggered by Th2 cytokines such as interleukin-4 and interleukin-13 as well as anti-inflammatory cytokines, IL-10 and TGF beta, or glucocorticoids. Glucose utilization and production of chemical mediators including ATP, reactive oxygen species (ROS), nitric oxide (NO), and NADPH support effector activities of M1 macrophages. Dysbiosis is an imbalance of commensal and pathogenic bacteria and the production of microbial antigens and metabolites. It is now known that the gut microbiota-derived products induce low-grade inflammatory activation of tissue-resident macrophages and contribute to metabolic and degenerative diseases, including diabetes, obesity, metabolic syndrome, and cancer. Here, we update the potential interplay of host gut microbiome dysbiosis and metabolic diseases. We also summarize on advances on fecal therapy, probiotics, prebiotics, symbiotics, and nutrients and small molecule inhibitors of metabolic pathway enzymes as prophylactic and therapeutic agents for metabolic diseases.
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页数:12
相关论文
共 98 条
[91]   An obesity-associated gut microbiome with increased capacity for energy harvest [J].
Turnbaugh, Peter J. ;
Ley, Ruth E. ;
Mahowald, Michael A. ;
Magrini, Vincent ;
Mardis, Elaine R. ;
Gordon, Jeffrey I. .
NATURE, 2006, 444 (7122) :1027-1031
[92]   A core gut microbiome in obese and lean twins [J].
Turnbaugh, Peter J. ;
Hamady, Micah ;
Yatsunenko, Tanya ;
Cantarel, Brandi L. ;
Duncan, Alexis ;
Ley, Ruth E. ;
Sogin, Mitchell L. ;
Jones, William J. ;
Roe, Bruce A. ;
Affourtit, Jason P. ;
Egholm, Michael ;
Henrissat, Bernard ;
Heath, Andrew C. ;
Knight, Rob ;
Gordon, Jeffrey I. .
NATURE, 2009, 457 (7228) :480-U7
[93]  
van Nood E, 2013, NEW ENGL J MED, V368, P2145, DOI [10.1056/NEJMoa1205037, 10.1056/NEJMc1303919]
[94]   Human intestinal microbiota composition is associated with local and systemic inflammation in obesity [J].
Verdam, Froukje J. ;
Fuentes, Susana ;
de Jonge, Charlotte ;
Zoetendal, Erwin G. ;
Erbil, Runi ;
Greve, Jan Willem ;
Buurman, Wim A. ;
de Vos, Willem M. ;
Rensen, Sander S. .
OBESITY, 2013, 21 (12) :E607-E615
[95]   Impact of oral vancomycin on gut microbiota, bile acid metabolism, and insulin sensitivity [J].
Vrieze, Anne ;
Out, Carolien ;
Fuentes, Susana ;
Jonker, Lisanne ;
Reuling, Isaie ;
Kootte, Ruud S. ;
van Nood, Els ;
Holleman, Frits ;
Knaapen, Max ;
Romijn, Johannes A. ;
Soeters, Maarten R. ;
Blaak, Ellen E. ;
Dallinga-Thie, Geesje M. ;
Reijnders, Dorien ;
Ackermans, Mariette T. ;
Serlie, Mireille J. ;
Knop, Filip K. ;
Holst, Jenst J. ;
van der Ley, Claude ;
Kema, Ido P. ;
Zoetendal, Erwin G. ;
de Vos, Willem M. ;
Hoekstra, Joost B. L. ;
Stroes, Erik S. ;
Groen, Albert K. ;
Nieuwdorp, Max .
JOURNAL OF HEPATOLOGY, 2014, 60 (04) :824-831
[96]   STOFFWECHSEL DER WEISSEN BLUTZELLEN [J].
WARBURG, O ;
GAWEHN, K ;
GEISSLER, AW .
ZEITSCHRIFT FUR NATURFORSCHUNG PART B-CHEMIE BIOCHEMIE BIOPHYSIK BIOLOGIE UND VERWANDTEN GEBIETE, 1958, 13 (08) :515-516
[97]   Metabolomics analysis reveals large effects of gut microflora on mammalian blood metabolites [J].
Wikoff, William R. ;
Anfora, Andrew T. ;
Liu, Jun ;
Schultz, Peter G. ;
Lesley, Scott A. ;
Peters, Eric C. ;
Siuzdak, Gary .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (10) :3698-3703
[98]   Personalized Nutrition by Prediction of Glycemic Responses [J].
Zeevi, David ;
Korem, Tal ;
Zmora, Niv ;
Israeli, David ;
Rothschild, Daphna ;
Weinberger, Adina ;
Ben-Yacov, Orly ;
Lador, Dar ;
Avnit-Sagi, Tali ;
Lotan-Pompan, Maya ;
Suez, Jotham ;
Mahdi, Jemal Ali ;
Matot, Elad ;
Malka, Gal ;
Kosower, Noa ;
Rein, Michal ;
Zilberman-Schapira, Gili ;
Dohnalova, Lenka ;
Pevsner-Fischer, Meirav ;
Bikovsky, Rony ;
Halpern, Zamir ;
Elinav, Eran ;
Segal, Eran .
CELL, 2015, 163 (05) :1079-1094