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Journal of Clinical Periodontology, ISSN 0303-6979, 06/2010, Volume 37, Issue 6, pp. 563 - 573
P>Background Peri-implantitis is common in patients with dental implants. We performed a single-blinded longitudinal randomized study to assess the effects of... 
Microbiota | Peri-implantitis | S. aureus | Treatment | microbiota | treatment | BACTERIA | aureus | BIOFILM | RESISTANT STAPHYLOCOCCUS-AUREUS | TITANIUM DENTAL IMPLANTS | DNA-DNA HYBRIDIZATION | THERAPY | DENTISTRY, ORAL SURGERY & MEDICINE | DRUG DELIVERY-SYSTEM | INFECTION | MICROBIAL FINDINGS | NASAL CARRIAGE | peri-implantitis | Single-Blind Method | Lactobacillus - growth & development | Streptococcus mutans - growth & development | Follow-Up Studies | Periodontitis - microbiology | Streptococcus - growth & development | Humans | Dental Implants - microbiology | Male | Colony Count, Microbial | Streptococcus anginosus - growth & development | Bacteria - growth & development | Bacteria - classification | Periodontal Pocket - therapy | Female | Periodontal Pocket - microbiology | Lactobacillus acidophilus - growth & development | Helicobacter pylori - growth & development | Staphylococcus - growth & development | Periodontitis - therapy | Capnocytophaga - growth & development | Treatment Outcome | Aggregatibacter actinomycetemcomitans - growth & development | Bacteroides - growth & development | Streptococcus oralis - growth & development | Ultrasonic Therapy - methods | Streptococcus gordonii - growth & development | Veillonella - growth & development | Longitudinal Studies | Dental Prophylaxis - methods | Fusobacterium nucleatum - growth & development | Smoking | Microbiology | Clinical trials | Implant dentures | Index Medicus | Dentistry | Medical and Health Sciences | Medicin och hälsovetenskap
Journal Article
Cell, ISSN 0092-8674, 02/2016, Volume 164, Issue 5, pp. 859 - 871
Journal Article
Journal of Periodontal Research, ISSN 0022-3484, 08/2013, Volume 48, Issue 4, pp. 517 - 526
Background and Objective Subgingival biofilms are the prime etiological factor of periodontal disease. Owing to their complex polymicrobial nature,... 
in‐situ | quantitative real‐time PCR | subgingival biofilm | hybridization | fluorescence | immunofluorescence | Subgingival biofilm | Quantitative real-time PCR | Fluorescence in-situ hybridization | Immunofluorescence | fluorescence in-situ hybridization | quantitative real-time PCR | DENTISTRY, ORAL SURGERY & MEDICINE | Prevotella intermedia - growth & development | Humans | Biofilms - growth & development | Campylobacter rectus - isolation & purification | Real-Time Polymerase Chain Reaction - methods | Actinomyces - growth & development | Porphyromonas gingivalis - isolation & purification | Treponema denticola - growth & development | Porphyromonas gingivalis - growth & development | Streptococcus anginosus - growth & development | Time Factors | Culture Media | Bacterial Load - methods | Bacteriological Techniques | Treponema denticola - isolation & purification | Fusobacterium nucleatum - isolation & purification | Veillonella - isolation & purification | Actinomyces - isolation & purification | Streptococcus anginosus - isolation & purification | Agar | In Situ Hybridization, Fluorescence | Prevotella intermedia - isolation & purification | Bacteroides - growth & development | Streptococcus oralis - growth & development | Campylobacter rectus - growth & development | Veillonella - growth & development | Microscopy, Fluorescence - methods | Fluorescent Antibody Technique | Biofilms - classification | Gingiva - microbiology | Streptococcus oralis - isolation & purification | Bacteroides - isolation & purification | Fusobacterium nucleatum - growth & development | Fluorescence | Models | Microscope and microscopy | Analysis | Index Medicus | Dentistry
Journal Article
Journal of Applied Microbiology, ISSN 1364-5072, 02/2014, Volume 116, Issue 2, pp. 245 - 257
AimEstablishment of ruminal bacterial community in dairy calves. Methods and ResultsRumen bacterial community was analysed on 6 calves bred according to... 
454 pyrosequencing | neonate | taxonomy | bacteria | rumen | dairy calves | Bacteria | Rumen | Neonate | Dairy calves | Taxonomy | EVOLUTION | FLUID | BOVINE RUMEN | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MICROBIOLOGY | DIVERSITY | Streptococcus - growth & development | Weaning | Male | Proteobacteria - classification | DNA, Bacterial - chemistry | Colostrum - microbiology | DNA, Ribosomal - chemistry | Fusobacterium - classification | Proteobacteria - genetics | Streptococcus - classification | Bacteria - growth & development | Pasteurellaceae - growth & development | Cattle | Animals, Suckling | Prevotella - growth & development | Bacteria - classification | RNA, Bacterial - genetics | Female | Rumen - microbiology | Prevotella - genetics | Bacteroides - classification | Fusobacterium - growth & development | Diet - veterinary | Prevotella - classification | Animals, Newborn | Pasteurellaceae - genetics | Rumen - enzymology | Diet - classification | Bacteroides - growth & development | Bacteroidetes - classification | Fatty Acids, Volatile - analysis | Fusobacterium - genetics | Bacteria - genetics | Bacteroides - genetics | Animals | Rumen - metabolism | Streptococcus - genetics | RNA, Ribosomal, 16S - genetics | Bacteroidetes - growth & development | Proteobacteria - growth & development | Pasteurellaceae - classification | Bacteroidetes - genetics | Enzymes | RNA | Fatty acids | Analysis | Microbiology | Diet | Index Medicus
Journal Article
Mucosal Immunology, ISSN 1933-0219, 05/2015, Volume 8, Issue 3, pp. 661 - 671
Defensins protect human barriers from commensal and pathogenic microorganisms. Human a-defensin 6 (HD-6) is produced exclusively by small intestinal Paneth... 
REDUCTION | THIOREDOXIN | DIVERSITY | AUTOPHAGY | SECRETION | IMMUNOLOGY | STRESS | Streptococcus - growth & development | Humans | Pseudomonas aeruginosa - growth & development | alpha-Defensins - chemical synthesis | Lactobacillus acidophilus - drug effects | Candida albicans - growth & development | Bifidobacterium - growth & development | Streptococcus - drug effects | Lactobacillus acidophilus - ultrastructure | Microbial Sensitivity Tests | Salmonella enterica - drug effects | Streptococcus - ultrastructure | Candida albicans - drug effects | Paneth Cells - immunology | Candida albicans - ultrastructure | Bacteroides - ultrastructure | Lactobacillus acidophilus - growth & development | Paneth Cells - metabolism | Oxidation-Reduction | Staphylococcus - growth & development | Staphylococcus - ultrastructure | Staphylococcus - drug effects | Salmonella enterica - growth & development | Bacteroides - growth & development | Pseudomonas aeruginosa - drug effects | Bacteroides - drug effects | alpha-Defensins - pharmacology | Anti-Bacterial Agents - chemical synthesis | Bifidobacterium - drug effects | Paneth Cells - secretion | Escherichia - ultrastructure | Escherichia - drug effects | Anti-Bacterial Agents - pharmacology | Salmonella enterica - ultrastructure | Bifidobacterium - ultrastructure | Pseudomonas aeruginosa - ultrastructure | Escherichia - growth & development | Hydrogen-Ion Concentration | Index Medicus
Journal Article
Glycobiology, ISSN 0959-6658, 11/2013, Volume 23, Issue 11, pp. 1281 - 1292
Human milk oligosaccharides (HMOS) are not digested in the proximal intestine. In distal intestine, HMOS collectively modify the microbiota, but the response... 
Glycosidase | Human milk oligosaccharides | Mutualist bacteria | Commensal bacteria | Organic acids | human milk oligosaccharides | DIARRHEA | STRATEGY | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | SIALIC-ACID CATABOLISM | BIFIDOBACTERIAL CONSUMPTION | organic acids | VIBRIO-CHOLERAE | mutualist bacteria | MOUSE INTESTINE | glycosidase | commensal bacteria | BREAST-FED INFANTS | INHIBIT | PATHOGENS | Escherichia coli K12 - growth & development | Lactobacillus delbrueckii - isolation & purification | Fucose - metabolism | Humans | Bifidobacterium - isolation & purification | Clostridium - isolation & purification | Bifidobacterium - growth & development | Streptococcus thermophilus - growth & development | Escherichia coli K12 - metabolism | Microbiota | Streptococcus thermophilus - metabolism | Culture Media | Escherichia coli K12 - isolation & purification | Bifidobacterium - metabolism | Lactobacillus delbrueckii - metabolism | Streptococcus thermophilus - isolation & purification | Milk, Human - metabolism | alpha-L-Fucosidase - metabolism | Clostridium - growth & development | Sialic Acids - metabolism | Gastrointestinal Tract - microbiology | Lactobacillus delbrueckii - growth & development | Enterococcus faecalis - growth & development | Glycosylation | Bacteroides - growth & development | Oligosaccharides - metabolism | Bacteroides - metabolism | Enterococcus faecalis - isolation & purification | Enterococcus faecalis - metabolism | Bacterial Proteins - metabolism | Clostridium - metabolism | Bacteroides - isolation & purification | Hydrogen-Ion Concentration | Index Medicus | Original
Journal Article
Antimicrobial Agents and Chemotherapy, ISSN 0066-4804, 12/2017, Volume 61, Issue 12
Pexiganan, a cationic peptide, exhibited a broad range of anti-anaerobic antimicrobial activity. The MIC90s of studied isolates were as follows: Bacteroides... 
Pexiganan | Finegoldia magna | Anaerobes | Topical antimicrobials | Bacteroides fragilis | Propionibacterium acnes | Clostridia | Wound infections | clostridia | BACTERIOLOGY | pexiganan | wound infections | DIABETIC FOOT INFECTIONS | topical antimicrobials | MICROBIOLOGY | PHARMACOLOGY & PHARMACY | anaerobes | Peptostreptococcus - drug effects | Skin - microbiology | Porphyromonas - drug effects | Propionibacterium acnes - growth & development | United States | Humans | Bacteroides fragilis - drug effects | Actinobacteria - drug effects | Clostridium perfringens - isolation & purification | Fusobacterium - drug effects | Microbial Sensitivity Tests | Skin Diseases, Infectious - microbiology | Sweden | Prevotella - growth & development | Bacteroides fragilis - growth & development | Actinobacteria - isolation & purification | Porphyromonas - isolation & purification | Fusobacterium - growth & development | Skin - pathology | Firmicutes - growth & development | Amino Acid Sequence | Antimicrobial Cationic Peptides - chemical synthesis | Anaerobiosis - physiology | Firmicutes - isolation & purification | Skin Diseases, Infectious - pathology | Antimicrobial Cationic Peptides - pharmacology | Peptostreptococcus - isolation & purification | Prevotella - drug effects | Anti-Bacterial Agents - chemical synthesis | Bacteroides fragilis - isolation & purification | Canada | Clostridium perfringens - drug effects | Peptostreptococcus - growth & development | Clostridium perfringens - growth & development | Actinobacteria - growth & development | Propionibacterium acnes - isolation & purification | Anti-Bacterial Agents - pharmacology | Porphyromonas - growth & development | Firmicutes - drug effects | Prevotella - isolation & purification | Propionibacterium acnes - drug effects | Fusobacterium - isolation & purification | Index Medicus
Journal Article
Journal Article
Applied and Environmental Microbiology, ISSN 0099-2240, 01/2012, Volume 78, Issue 2, pp. 420 - 428
Journal Article
CLINICAL ORAL IMPLANTS RESEARCH, ISSN 0905-7161, 06/2011, Volume 22, Issue 6, pp. 571 - 577
AIM: To compare the early bacterial colonization and soft tissue health of mucosa adjacent to zirconia (ZrO(2)) and titanium (Ti) abutment surfaces in vivo.... 
microbiology | zirconia | implant | titanium | abutment | peri‐implant mucosa | Zirconia | Titanium | Peri-implant mucosa | Implant | Microbiology | Abutment | MODIFIED DENTAL IMPLANTS | ENGINEERING, BIOMEDICAL | PERIODONTAL PATHOGENS | PORPHYROMONAS-GINGIVALIS | REAL-TIME PCR | MUCOSAL ATTACHMENT |