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Science, ISSN 0036-8075, 08/2017, Volume 357, Issue 6351, pp. 570 - 575
Journal Article
Nature Immunology, ISSN 1529-2908, 09/2013, Volume 14, Issue 9, pp. 937 - 948
Defense against attaching-and-effacing bacteria requires the sequential generation of interleukin 23 (IL-23) and IL-22 to induce protective mucosal responses.... 
NATURAL-KILLER-CELLS | STEM-CELLS | SIGNALING CONTROLS | ROR-GAMMA-T | IN-VIVO | INNATE LYMPHOID-CELLS | LY6C(HI) MONOCYTES | DIFFERENTIATION | IMMUNOLOGY | CITROBACTER-RODENTIUM | KNOCKOUT MICE | Intestinal Mucosa - metabolism | Spleen - immunology | Minor Histocompatibility Antigens | Dendritic Cells - immunology | Antigens, CD - metabolism | Host-Pathogen Interactions - immunology | Enterobacteriaceae Infections - immunology | Lymphotoxin beta Receptor - metabolism | Cell Differentiation - genetics | Lectins, C-Type - metabolism | Interleukin-23 - metabolism | Intestinal Mucosa - immunology | Wound Healing - genetics | Dendritic Cells - metabolism | Citrobacter rodentium - immunology | Signal Transduction | Enterobacteriaceae Infections - microbiology | Enterobacteriaceae Infections - mortality | Receptor, Notch2 - metabolism | Receptors, Cell Surface - metabolism | Mice, Transgenic | Intestinal Mucosa - microbiology | Transcription Factors - genetics | Wound Healing - immunology | Receptor, Notch2 - deficiency | Transcription Factors - metabolism | Cell Differentiation - immunology | Animals | Host-Pathogen Interactions - genetics | Lymphotoxin beta Receptor - genetics | Dendritic Cells - cytology | Mice | CD11b Antigen - metabolism | Genetic aspects | Bacterial infections | Research | Dendritic cells | Health aspects | Risk factors
Journal Article
Gastroenterology, ISSN 0016-5085, 2008, Volume 134, Issue 3, pp. 756 - 767.e6
Background & Aims: Hypoxia inducible factor -1 (HIF-1) is the key transcriptional regulator during adaptation to hypoxia. Recent studies provide evidence for... 
Gastroenterology and Hepatology | TRANSPORT GENES | PATHOGENICITY | INDUCIBLE FACTOR-I | YERSINIA-ENTEROCOLITICA | GENE-EXPRESSION | NITRIC-OXIDE | IRON | HIF-1-ALPHA | VIRULENCE | GASTROENTEROLOGY & HEPATOLOGY | ENDOTHELIAL GROWTH-FACTOR | Thiazoles - metabolism | Up-Regulation | Epithelial Cells - metabolism | Peyer's Patches - metabolism | Humans | Transcriptional Activation | Enterobacter aerogenes - metabolism | Oxygen - metabolism | Hypoxia-Inducible Factor 1, alpha Subunit - deficiency | Procollagen-Proline Dioxygenase - metabolism | Cell Hypoxia | Endothelial Cells - microbiology | Yersinia Infections - metabolism | Time Factors | Hypoxia-Inducible Factor 1, alpha Subunit - metabolism | Peyer's Patches - microbiology | Female | Disease Models, Animal | Caco-2 Cells | Hydroxylation | Endothelial Cells - metabolism | Hypoxia-Inducible Factor 1, alpha Subunit - genetics | Siderophores - metabolism | Yersinia Infections - genetics | Enterobacteriaceae - pathogenicity | Mice, Inbred C57BL | Gene Expression Regulation | Yersinia Infections - microbiology | Phenols - metabolism | Salmonella enterica - metabolism | Enterobacteriaceae - metabolism | Mice, Knockout | Hydroxamic Acids - metabolism | Animals | Epithelial Cells - microbiology | Yersinia enterocolitica - metabolism | Mice | Mice, Inbred BALB C | HeLa Cells | Endothelial growth factors | Bacterial infections
Journal Article
The Journal of Infectious Diseases, ISSN 0022-1899, 7/2012, Volume 206, Issue 1, pp. 99 - 109
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 05/2012, Volume 287, Issue 20, pp. 16955 - 16964
Citrobacter rodentium is an enteric bacterial pathogen of the mouse intestinal tract that triggers inflammatory responses resembling those of humans infected... 
ACTIVATION | EFFACING PATHOGEN | MICE DEFICIENT | CASPASE-1 | INTERLEUKIN-1-BETA | BIOCHEMISTRY & MOLECULAR BIOLOGY | DISEASE | INDUCED COLITIS | SECRETION | VIRULENCE | MYD88 | Interleukin-18 - immunology | Inflammasomes - metabolism | NLR Family, Pyrin Domain-Containing 3 Protein | Caspase 1 - metabolism | Caspase 1 - immunology | Interleukin-1beta - genetics | Citrobacter rodentium - metabolism | Enterobacteriaceae Infections - immunology | Calcium-Binding Proteins - immunology | Enterobacteriaceae Infections - genetics | Interleukin-1beta - metabolism | Apoptosis Regulatory Proteins - genetics | Bacterial Secretion Systems - immunology | Carrier Proteins - immunology | Macrophages - immunology | Macrophages - microbiology | Calcium-Binding Proteins - metabolism | Apoptosis Regulatory Proteins - immunology | Bacterial Secretion Systems - genetics | Citrobacter rodentium - immunology | Enterobacteriaceae Infections - metabolism | Citrobacter rodentium - genetics | Interleukin-1beta - immunology | Enterobacteriaceae Infections - pathology | Inflammasomes - genetics | Apoptosis Regulatory Proteins - metabolism | Mice, Knockout | Carrier Proteins - genetics | Macrophages - metabolism | Animals | Carrier Proteins - metabolism | Caspase 1 - genetics | Inflammasomes - immunology | Mice | Interleukin-18 - genetics | Interleukin-18 - metabolism | Calcium-Binding Proteins - genetics | Host-Pathogen Interactions | Immunology | Innate Immunity | Inflammation | Inflammasome | Colitis | Citrobacter rodentium
Journal Article
American Journal of Clinical Nutrition, ISSN 0002-9165, 03/2017, Volume 105, Issue 3, pp. 635 - 650
Journal Article
Comparative Biochemistry and Physiology, Part A, ISSN 1095-6433, 11/2015, Volume 189, pp. 1 - 10
Journal Article
Food and Chemical Toxicology, ISSN 0278-6915, 09/2013, Volume 59, pp. 428 - 437
Urolithins were the metabolites of ellagic acid by intestinal flora in gastrointestinal tract. In previous research, it was found that urolithins could mainly... 
Antiproliferative | Urolithin | Antioxidant | Ellagic acid | Apoptosis | OXIDATIVE STRESS | INDUCED APOPTOSIS | PHENOLIC-COMPOUNDS | FOOD SCIENCE & TECHNOLOGY | CACO-2 | P38 MAPK | P53 | JNK ACTIVATION | HEPATOCELLULAR-CARCINOMA | PATHWAY | TOXICOLOGY | EXPRESSION | Coumarins - metabolism | Reactive Oxygen Species - metabolism | Apoptosis - drug effects | Ellagic Acid - metabolism | Antioxidants - metabolism | Caspase 3 - chemistry | Humans | Urinary Bladder Neoplasms - enzymology | Caspase 3 - metabolism | p38 Mitogen-Activated Protein Kinases - biosynthesis | Neoplasm Proteins - metabolism | PPAR gamma - metabolism | Lipid Peroxidation - drug effects | Inhibitory Concentration 50 | Antineoplastic Agents, Phytogenic - metabolism | p38 Mitogen-Activated Protein Kinases - metabolism | Gene Expression Regulation, Neoplastic - drug effects | Neoplasm Proteins - genetics | Urinary Bladder Neoplasms - metabolism | Ellagic Acid - pharmacology | Neoplasm Proteins - biosynthesis | p38 Mitogen-Activated Protein Kinases - genetics | Antioxidants - pharmacology | Urinary Bladder Neoplasms - drug therapy | Enterobacteriaceae - metabolism | Coumarins - pharmacology | Reactive Oxygen Species - antagonists & inhibitors | MAP Kinase Signaling System - drug effects | PPAR gamma - agonists | Cell Line, Tumor | Cell Proliferation - drug effects | Colon - microbiology | Oxidative Stress - drug effects | Antineoplastic Agents, Phytogenic - pharmacology | Methylation | Antioxidants | Metabolites | Bladder cancer | Index Medicus
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2012, Volume 7, Issue 4, p. e35176
Background: Several small diffusible molecules are involved in bacterial quorum sensing and virulence. The production of autoinducers-1 and -2, quinolone,... 
CAROTOVORA SUBSP ATROSEPTICA | N-ACYLHOMOSERINE LACTONES | POTATO | ACYL-HOMOSERINE LACTONE | PSEUDOMONAS-AERUGINOSA | ENTERIC PHYTOPATHOGEN | MULTIDISCIPLINARY SCIENCES | SP-NOV | VIRULENCE | III SECRETION SYSTEM | ERWINIA-CAROTOVORA | gamma-Aminobutyric Acid - metabolism | Multienzyme Complexes - metabolism | RNA, Messenger - metabolism | 4-Butyrolactone - metabolism | Acyl-Butyrolactones - metabolism | Homoserine - analogs & derivatives | Enterobacteriaceae - growth & development | Quorum Sensing | Indoleacetic Acids - metabolism | Signal Transduction | Bacterial Proteins - genetics | Quinolones - metabolism | Pectobacterium - metabolism | Homoserine - metabolism | Multienzyme Complexes - genetics | Lactones - metabolism | Solanum tuberosum - microbiology | Enterobacteriaceae - metabolism | Enterobacteriaceae - drug effects | Bacterial Proteins - metabolism | Pectobacterium - drug effects | Pectobacterium - growth & development | Tryptophan - pharmacology | 4-Butyrolactone - analogs & derivatives | Kinetics | Potatoes | Analysis | Biological control | Detectors | DNA polymerases | Tryptophan | Bacteria | Pests | Virulence (Microbiology) | Acetic acid | Chemical communication | Immunoassay | Adenosylmethionine | RNA-directed DNA polymerase | Laboratories | Virulence | Indole | Genomes | Lactones | Signal transduction | N-octanoylhomoserine lactone | Stress response | Communication | Adaptation | N-Acyl homoserine lactone | Enzymes | Cloning | Metabolism | Gene expression | Chromatography | S-Adenosylmethionine | Signaling | Biofilms | Acids | Rot | Metabolic pathways | Biosensors | Homoserine lactones | Homoserine | gamma-Aminobutyric Acid | Multienzyme Complexes | Solanum tuberosum | Pectobacterium | Bacteriology | Quinolones | Bacterial Proteins | Life Sciences | Microbiology and Parasitology | 4-Butyrolactone | Acyl-Butyrolactones | RNA, Messenger | Indoleacetic Acids | Enterobacteriaceae
Journal Article