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Nature, ISSN 0028-0836, 2014, Volume 505, Issue 7484, pp. 559 - 563
Journal Article
Nature, ISSN 0028-0836, 2012, Volume 486, Issue 7405, pp. 104 - 108
Journal Article
FEMS Microbiology Letters, ISSN 0378-1097, 2017, Volume 364, Issue 4, pp. 1 - 7
Hydrogen sulfide is formed in the human intestinal tract as the end product of the anaerobic microbial degradation of sulfur compounds present in mucus, bile... 
Sulfide | Human gut microbiota | Sulfite-reducing bacteria | Taurine fermentation | Bile | HUMAN COLON | SULFATE-REDUCING BACTERIUM | human gut microbiota | sulfite-reducing bacteria | MICROBIOLOGY | HYDROGEN-SULFIDE | GUT MICROBIOTA | bile | METABOLISM | DISEASE | BILOPHILA-WADSWORTHIA RZATAU | SP-NOV | sulfide | HEALTH | taurine fermentation | BILE-ACIDS | Humans | Intestines - chemistry | Firmicutes - genetics | Phylogeny | Clostridium - isolation & purification | Sulfites - pharmacology | Feces - microbiology | Bacteria - classification | Sulfides - metabolism | RNA, Ribosomal, 16S | Sulfur - metabolism | Bacteria - metabolism | Sulfates - metabolism | Firmicutes - isolation & purification | Sulfates - pharmacology | Clostridium - genetics | Gastrointestinal Microbiome - genetics | Sulfites - metabolism | Bacteria - genetics | Sequence Analysis, DNA | Irritable Bowel Syndrome - microbiology | Bacteria - isolation & purification | DNA, Bacterial - genetics | Intestines - microbiology | Firmicutes - drug effects | Taurine - metabolism | Clostridium - drug effects | Enrichment | Biodegradation | Microbial activity | Sulfur compounds | Anaerobic microorganisms | rRNA 16S | Mucus | Metabolism | Sulfates | Degradation | Hydrogen sulfide | Proteins | Sulfite | Microorganisms | Intestine | Irritable bowel syndrome | Microbial degradation | Bacteria | Sulfate | Sulfur | Organosulfur compounds | Index Medicus
Journal Article
Journal of Clinical Microbiology, ISSN 0095-1137, 08/2005, Volume 43, Issue 8, pp. 4041 - 4045
Journal Article
Journal Article
Clinical Infectious Diseases, ISSN 1058-4838, 9/1997, Volume 25, Issue 2, pp. S275 - S278
Journal Article
Scientific Reports, ISSN 2045-2322, 11/2015, Volume 5, Issue 1, pp. 16643 - 16643
Recent evidence indicates that the gut microbiota plays a key role in the pathophysiology of obesity. Indeed, diet-induced obesity (DIO) has been associated to... 
HIGH-FAT-DIET | INTESTINAL MICROBIOTA | GLUCOSE | MULTIDISCIPLINARY SCIENCES | RESISTANCE | GUT MICROBIOTA | ASSOCIATION | EXTRACT | Age Factors | Species Specificity | Diet, High-Fat - adverse effects | Male | Obesity - genetics | Verrucomicrobia - physiology | Adipose Tissue - metabolism | Inflammation - metabolism | Time Factors | Bacteria - classification | Lipid Metabolism - genetics | Obesity - etiology | Verrucomicrobia - genetics | Gene Expression | Mice, Inbred C57BL | Gastrointestinal Tract - microbiology | Bacterial Load | Gastrointestinal Microbiome - genetics | Reverse Transcriptase Polymerase Chain Reaction | Bacteria - genetics | Inflammation - etiology | Obesity - metabolism | Host-Pathogen Interactions | Animals | Bilophila - physiology | Metabolic Diseases - metabolism | Metabolic Diseases - etiology | Bilophila - genetics | Inflammation - genetics | Metabolic Diseases - genetics | RNA, Ribosomal, 16S - genetics | Homeostasis - genetics | Obesity | Animal models | Adipose tissue | Homeostasis | Abundance | Triglycerides | Inflammation | Metabolism | Insulin | High fat diet | Leptin | Rodents | Lipid metabolism | Metabolic disorders | Index Medicus | Microbiologia | Obesitat | Adipose tissues | Intestines | Microbiology | Teixit adipós | Mice (Laboratory animals) | Ratolins (Animals de laboratori) | Intestins
Journal Article