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Clinical microbiology and infection, ISSN 1198-743X, 2018, Volume 24, Issue 12, pp. 1339.e1 - 1339.e5
Listeria monocytogenes (Lm) is a foodborne human pathogen responsible for severe infections, including septicaemia, neurolisteriosis, and maternal–foetal and... 
Listeria monocytogenes | Listeriosis | Pleural effusion | Immunosuppression | Pneumonia | INFECTIOUS DISEASES | MANAGEMENT | SERIES | SURVEILLANCE | EFFUSION | MICROBIOLOGY | CENTRAL-NERVOUS-SYSTEM | Listeriosis - drug therapy | Sepsis - etiology | Lung Diseases - microbiology | Humans | Middle Aged | Pneumonia, Bacterial - etiology | Male | Lung Diseases - drug therapy | Lung Diseases - etiology | Empyema, Pleural - epidemiology | Listeriosis - epidemiology | Respiratory Tract Infections - microbiology | Anti-Bacterial Agents - therapeutic use | Sepsis - drug therapy | Pleuropneumonia - epidemiology | Aged, 80 and over | Adult | Female | Respiratory Tract Infections - etiology | Retrospective Studies | Pleuropneumonia - drug therapy | Pleuropneumonia - etiology | Pneumonia, Bacterial - microbiology | Listeriosis - complications | Empyema, Pleural - microbiology | Sepsis - epidemiology | Listeria monocytogenes - isolation & purification | Respiratory Tract Infections - drug therapy | Pleuropneumonia - microbiology | Pneumonia, Bacterial - epidemiology | Empyema, Pleural - drug therapy | Listeriosis - microbiology | Pneumonia, Bacterial - drug therapy | Aged | Respiratory Tract Infections - epidemiology | Empyema, Pleural - etiology | Lung Diseases - epidemiology | Sepsis - microbiology | Listeria monocytogenes - drug effects | Pneumonia, Bacterial/etiology | Lung Diseases/epidemiology | Sepsis/drug therapy | Empyema, Pleural/epidemiology | Listeriosis/drug therapy | Sepsis/microbiology | Lung Diseases/microbiology | Pneumonia, Bacterial/epidemiology | Lung Diseases/etiology | Life Sciences | Listeriosis/microbiology | Pneumonia, Bacterial/drug therapy | Sepsis/epidemiology | Pleuropneumonia/epidemiology | Pleuropneumonia/etiology | Respiratory Tract Infections/drug therapy | Lung Diseases/drug therapy | Empyema, Pleural/drug therapy | Listeria monocytogenes/isolation & purification | Pleuropneumonia/drug therapy | Listeria monocytogenes/drug effects | Respiratory Tract Infections/epidemiology | Pleuropneumonia/microbiology | Bacteriology | Human health and pathology | Microbiology and Parasitology | Infectious diseases | Respiratory Tract Infections/etiology | Respiratory Tract Infections/microbiology | Listeriosis/complications | Empyema, Pleural/etiology | Empyema, Pleural/microbiology | Listeriosis/epidemiology | Pneumonia, Bacterial/microbiology | Anti-Bacterial Agents/therapeutic use | Sepsis/etiology
Journal Article
Clinical & Experimental Immunology, ISSN 0009-9104, 04/2010, Volume 160, Issue 1, pp. 70 - 79
... birth (12 February 1809). Darwin's insights increasingly underpin our attempts to understand human diseases, and the hygiene hypothesis is becoming a major... 
dendritic cells | hygiene hypothesis | Darwinian medicine | old friends' hypothesis | Treg | ‘old friends’ hypothesis | Hygiene hypothesis | 'Old friends' hypothesis | Dendritic cells | PARASITES | 'old friends' hypothesis | LESSONS | IMMUNOLOGY | HAY-FEVER | T-reg | PATHOGENESIS | EVOLUTION | DISEASE | ASTHMA | ASSOCIATION | VIRUSES | INNATE IMMUNITY | Lung - microbiology | Life Style | Skin - microbiology | Diabetes Mellitus, Type 2 - microbiology | Humans | Neurodegenerative Diseases - immunology | Gastrointestinal Tract - immunology | Bacteria - immunology | Neurodegenerative Diseases - microbiology | Diabetes Mellitus, Type 2 - immunology | Atherosclerosis - microbiology | Skin - immunology | Inflammation - microbiology | Atherosclerosis - immunology | Communicable Diseases - epidemiology | Neoplasms - microbiology | Depression - microbiology | Gastrointestinal Tract - microbiology | Inflammation - immunology | Inflammation - epidemiology | Biological Evolution | Animals | Neoplasms - immunology | Communicable Diseases - immunology | Communicable Diseases - microbiology | Milk, Human - immunology | Milk, Human - microbiology | Chronic Disease | Hygiene | Lung - immunology | Depression - immunology | Type 2 diabetes | Autoimmunity | Nervous system diseases | Conferences, meetings and seminars | Gastrointestinal diseases | Dioxin | Inflammation | Stress (Psychology) | Health aspects | Medical research | Hypotheses | Vitamin D | Immune system | Nutrition and Microbiome as Determinants of Chronic Inflammation | Part III
Journal Article
Journal Article
The Journal of infectious diseases, ISSN 1537-6613, 2015, Volume 211, Issue 1, pp. 156 - 165
Background. A predominantly T-helper type 2 (Th2) immune response is critical in the prognosis of pulmonary Pseudomonas aeruginosa infection. But the mucosal... 
human-milk | cytokine production | butyrate | in-vitro | chain fatty-acids | galacto-oligosaccharides | t-cells | lactobacillus | virus-infection | cystic-fibrosis patients | intestinal microbiota | prebiotics | Th1 and M1 polarization | P. aeruginosa lung infection | INFECTIOUS DISEASES | VIRUS-INFECTION | GALACTO-OLIGOSACCHARIDES | MICROBIOLOGY | IMMUNOLOGY | CYTOKINE PRODUCTION | HUMAN-MILK | METABOLISM | CYSTIC-FIBROSIS PATIENTS | CHAIN FATTY-ACIDS | BUTYRATE | T-CELLS | LACTOBACILLUS | Intestines - drug effects | Lung Diseases - microbiology | GATA3 Transcription Factor - immunology | Pseudomonas aeruginosa - growth & development | Microbiota - drug effects | Male | T-Box Domain Proteins - immunology | Lung Diseases - drug therapy | Th1 Cells - immunology | Intestines - immunology | Leukocytes - immunology | Oligosaccharides - pharmacology | Leukocytes - microbiology | Tumor Necrosis Factor-alpha - immunology | Keratinocytes - microbiology | Macrophages - immunology | Macrophages - microbiology | Chemotactic Factors - immunology | Microbiota - immunology | Pseudomonas Infections - drug therapy | Pseudomonas aeruginosa - drug effects | Pseudomonas Infections - microbiology | Keratinocytes - immunology | Pectins - chemistry | Pseudomonas Infections - immunology | Lung Diseases - immunology | Interleukin-4 - immunology | Th1 Cells - microbiology | Animals | Intestines - microbiology | Interferon-gamma - immunology | Mice | Mice, Inbred BALB C | Interleukin-10 - immunology | Pseudomonas Infections/microbiology | Macrophages/microbiology | Oligosaccharides/pharmacology | Macrophages/immunology | Lung Diseases/immunology | Lung Diseases/microbiology | Interferon-gamma/immunology | Keratinocytes/microbiology | Microbiota/drug effects | Life Sciences | Leukocytes/microbiology | Pseudomonas Infections/immunology | Interleukin-10/immunology | Lung Diseases/drug therapy | T-Box Domain Proteins/immunology | Leukocytes/immunology | Pseudomonas aeruginosa/drug effects | Th1 Cells/microbiology | GATA3 Transcription Factor/immunology | Interleukin-4/immunology | Intestines/drug effects | Intestines/microbiology | Keratinocytes/immunology | Chemotactic Factors/immunology | Tumor Necrosis Factor-alpha/immunology | Microbiota/immunology | Pseudomonas aeruginosa/growth & development | Pectins/chemistry | Pseudomonas Infections/drug therapy | Th1 Cells/immunology | Intestines/immunology
Journal Article
Infection and immunity, ISSN 1098-5522, 2014, Volume 82, Issue 3, pp. 937 - 948
Infection of C57BL/6 mice with the moderately virulent strain 52D models the complex adaptive immune response observed in HIV-negative patients with persistent... 
FUNGAL-INFECTION | INFECTIOUS DISEASES | REPEATED EXPOSURE | DENDRITIC CELLS | ALPHA-GALACTOSYLCERAMIDE | KILLER T-CELLS | ALLERGIC BRONCHOPULMONARY-MYCOSIS | NEOFORMANS INFECTION | IMMUNOLOGY | PROTECTIVE TH1 RESPONSE | PULMONARY CRYPTOCOCCOSIS | ASPERGILLUS-FUMIGATUS CONIDIA | Antigens, CD - immunology | Lung - microbiology | Cryptococcosis - microbiology | Dendritic Cells - immunology | Interleukin-17 - immunology | Cryptococcus neoformans - immunology | Th2 Cells - immunology | Th1 Cells - immunology | Lung Diseases, Fungal - microbiology | Th2 Cells - microbiology | CD4-Positive T-Lymphocytes - immunology | Leukocytes - immunology | Myeloid Cells - immunology | Leukocytes - microbiology | Neutrophils - microbiology | Macrophages - immunology | Macrophages - microbiology | B-Lymphocytes - microbiology | Inflammation - microbiology | CD4-Positive T-Lymphocytes - microbiology | CD8-Positive T-Lymphocytes - microbiology | Lung Diseases, Fungal - immunology | Mice, Inbred C57BL | Neutrophils - immunology | Inflammation - immunology | Cryptococcosis - immunology | Th1 Cells - microbiology | Animals | B-Lymphocytes - immunology | Interferon-gamma - immunology | Dendritic Cells - microbiology | Mice | CD8-Positive T-Lymphocytes - immunology | Lung - immunology | Myeloid Cells - microbiology | Fungal and Parasitic Infections
Journal Article
PloS one, ISSN 1932-6203, 2006, Volume 1, Issue 1, p. e43
... Diseases, Institut Cochin, Paris, France Paul Fornès Affiliation: Hôpital Européen Georges-Pompidou, Assistance Publique-Hôpitaux de Paris, Department of Anatomo... 
BIOLOGY | Microscopy, Electron, Transmission | Humans | Cells, Cultured | Mycobacterium tuberculosis - immunology | Tuberculosis - microbiology | DNA Primers - genetics | Latent Tuberculosis - immunology | 3T3-L1 Cells | Adipocytes - microbiology | Mycobacterium tuberculosis - isolation & purification | Host-Pathogen Interactions - immunology | Mycobacterium tuberculosis - pathogenicity | Animals | DNA, Bacterial - genetics | Models, Biological | Receptors, Scavenger - physiology | Base Sequence | Adipocytes - ultrastructure | Mice | Latent Tuberculosis - microbiology | Adipose Tissue - microbiology | Mycobacterium tuberculosis - genetics | Adipose tissues | Anti-infective agents | Antitubercular agents | Skin | Tuberculosis | Analysis | Drugs | Cell culture | Bacilli | Animal models | Adipose tissue | Lipids | Genomes | Infections | Activation | Adipocytes | Drug development | Lymph nodes | Immunosuppressive agents | Dormancy | Receptors | Microorganisms | Replicating | Etiology | Scavenger receptors | Bacteria | Localization | Isoniazid | Deoxyribonucleic acid--DNA | Immune system | Killing | Stomach | Kidneys | Latent infection | Antimicrobial agents | Abundance | Gene expression | Polymerase chain reaction | Pathology | Infectious diseases | Microscopy | Lungs | Biopsy | Stem cells | Hypoxia | Life Sciences | Microbiology and Parasitology | Human health and pathology | Deoxyribonucleic acid | DNA
Journal Article
American journal of respiratory and critical care medicine, ISSN 1535-4970, 2007, Volume 175, Issue 4, pp. 367 - 416
Journal Article
PLoS Pathogens, ISSN 1553-7366, 05/2011, Volume 7, Issue 5, p. e1001339
.... Infections are also linked to the aetiology of diseases such as asthma, emphysema and heart disease... 
ALLERGIC INFLAMMATION | TRACHOMATIS INFECTION | MICROBIOLOGY | KNOCKOUT MICE | AIRWAYS HYPERREACTIVITY | PNEUMONIAE INFECTION | VIROLOGY | INTERFERON-GAMMA | TRANSCUTANEOUS IMMUNIZATION | NITRIC-OXIDE | ALVEOLAR MACROPHAGES | PARASITOLOGY | MURIDARUM INFECTION | Lung - microbiology | Interleukin-13 - immunology | Interferon-gamma - metabolism | CD4-Positive T-Lymphocytes - immunology | Chlamydia muridarum - immunology | Respiratory Tract Infections - microbiology | Chlamydia Infections - immunology | Disease Susceptibility - immunology | Interleukin-10 - metabolism | Female | Macrophages - immunology | Macrophages - microbiology | Vaginal Diseases - immunology | Bacterial Load | Immunity, Innate | Mice, Knockout | Animals | Chlamydia Infections - microbiology | Chlamydia muridarum - pathogenicity | Epithelial Cells - immunology | Epithelial Cells - microbiology | Respiratory Tract Infections - immunology | Vaginal Diseases - microbiology | Mice | Mice, Inbred BALB C | Lung - immunology | Chlamydia infections | Prevention | Care and treatment | Interleukins | Causes of | Development and progression | Disease susceptibility | Genetic aspects | Research | Health aspects | Flow cytometry | Sexually transmitted diseases--STD | Bacterial infections | Lungs | Nitric oxide | Eye diseases | Infections | Chronic obstructive pulmonary disease | Alzheimers disease | Asthma | Sexually transmitted diseases | STD
Journal Article
International Journal of COPD, ISSN 1176-9106, 2012, Volume 7, pp. 555 - 569
Journal Article