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Analyst, ISSN 0003-2654, 09/2016, Volume 141, Issue 18, pp. 5432 - 5440
Journal Article
Journal Article
Journal Article
Journal Article
The Journal of Nutritional Biochemistry, ISSN 0955-2863, 12/2017, Volume 50, pp. 16 - 25
Obesity and type 2 diabetes are characterized by subclinical inflammatory process. Changes in composition or modulation of the gut microbiota may play an... 
Gut microbiota | Probiotics | Insulin sensitivity | KINASE-ACTIVITY | HIGH-FAT-DIET | FOOD-INTAKE | BIOCHEMISTRY & MOLECULAR BIOLOGY | ENDOTOXEMIA | RECEPTOR | SKELETAL-MUSCLE | NUTRITION & DIETETICS | INFLAMMATION | DISEASE | RESISTANCE | INDUCED OBESITY | Dysbiosis - etiology | Lactobacillus rhamnosus - isolation & purification | Obesity - diet therapy | Intestinal Mucosa - metabolism | Intestinal Mucosa - physiopathology | Liver - pathology | Adipose Tissue, White - immunology | Diabetes Mellitus, Type 2 - microbiology | Bifidobacterium bifidum - immunology | Adipose Tissue, White - metabolism | Cell Membrane Permeability | Diet, High-Fat - adverse effects | Male | Dysbiosis - microbiology | Molecular Typing | Lactobacillus acidophilus - classification | Dysbiosis - immunology | Feces - microbiology | Liver - immunology | Appetite Regulation | Intestinal Mucosa - immunology | Diabetes Mellitus, Type 2 - immunology | Lactobacillus acidophilus - immunology | Diabetes Mellitus, Type 2 - etiology | Bifidobacterium bifidum - classification | Lactobacillus acidophilus - growth & development | Lactobacillus rhamnosus - immunology | Bifidobacterium bifidum - growth & development | Adipose Tissue, White - pathology | Lactobacillus rhamnosus - growth & development | Liver - metabolism | Diabetes Mellitus, Type 2 - prevention & control | Insulin Resistance | Obesity - physiopathology | Intestinal Mucosa - microbiology | Random Allocation | Lactobacillus rhamnosus - classification | Obesity - metabolism | Obesity - pathology | Animals | Probiotics - therapeutic use | Mice | Gastrointestinal Microbiome - immunology | Glucose Clamp Technique | Bifidobacterium bifidum - isolation & purification | Dysbiosis - prevention & control | Lactobacillus acidophilus - isolation & purification | Immunohistochemistry | Type 2 diabetes | Microbiota (Symbiotic organisms) | Analysis | Liver | Leptin | Insulin resistance | Permeability | Glucose | Insulin | Dextrose
Journal Article
World Journal of Microbiology and Biotechnology, ISSN 0959-3993, 3/2014, Volume 30, Issue 3, pp. 847 - 853
To investigate Lactobacillus acidophilus (L. acidophilus) and Bifidobacterium bifidum (B. bifidum) supplementation to triple therapy for Helicobacter pylori... 
Biochemistry, general | Biotechnology | Probiotics | Chemistry | Microbiology | Helicobacter pylori | Environmental Engineering/Biotechnology | Applied Microbiology | Intestinal flora | PRIMERS | COLONIZATION | RIBOSOMAL-RNA | IDENTIFICATION | CHILDREN | BLIND | TRACT | RATES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | RESISTANCE | INFECTION | Probiotics - administration & dosage | Biological Therapy - methods | Escherichia coli - drug effects | Humans | Child, Preschool | Helicobacter pylori - drug effects | Male | Bifidobacterium - isolation & purification | Bifidobacterium - growth & development | Helicobacter Infections - therapy | Female | Escherichia coli - growth & development | Helicobacter Infections - diagnosis | Lactobacillus acidophilus - growth & development | Child | Real-Time Polymerase Chain Reaction | Urease - analysis | Helicobacter pylori - growth & development | Breath Tests | Gastrointestinal Tract - microbiology | Treatment Outcome | Bacterial Load | Drug Therapy, Combination - methods | Escherichia coli - isolation & purification | RNA, Ribosomal, 16S - genetics | Helicobacter pylori - isolation & purification | Lactobacillus acidophilus - isolation & purification | Anti-Bacterial Agents - administration & dosage | Helicobacter infections | RNA | Analysis | Studies | Bacteria | Pharmaceutical sciences | Therapy | Dynamics | Children | Lactobacillus acidophilus | Standards
Journal Article