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LAIR-1 limits neutrophilic airway inflammation
Kuldeep Kumawat
, Ruben J. Geerdink
, Marije P. Hennus
, Mojtaba Abdul Roda
, Ingrid Van Ark
, Thea Leusink-Muis
, Gert Folkerts
, Anita Van Oort-Jansen
, Alexandra Mazharian
, Steve P. Watson
, Frank E. Coenjaerts
,
Louis Bont
, Linde Meyaard
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:
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peer review
37
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Keyphrases
Airway
54%
Airway Inflammation
27%
Antimicrobial Defense
9%
Cigarette Smoking
9%
Collagen Receptor
9%
CXCL1
9%
Cytokine Production
18%
Disease Severity
9%
Exposure Model
9%
Gene-deficient Mice
18%
Immune Pathology
9%
Immune Signaling
9%
In Vivo Evidence
9%
Inhibitory Receptors
9%
Intranasal
9%
Intrinsic Function
9%
LAIR-1
18%
Leukocyte Immune-type Receptors
100%
Lung Disease
9%
Lung Inflammation
9%
Lymphocyte Activation
9%
Negative Regulator
9%
Neutrophil Recruitment
27%
Neutrophil Response
9%
Neutrophilic Inflammation
100%
Neutrophils
63%
Pharmacological Intervention
9%
Production Load
9%
Promising Target
9%
Respiratory Syncytial Virus
9%
Respiratory Syncytial Virus Infection
9%
Smoke Exposure
9%
Tissue Homeostasis
9%
Tissue Migration
9%
Viral Bronchiolitis
9%
Viral Load
18%
Weight Loss
9%
Wild Mice
18%
Medicine and Dentistry
Antiinfective Agent
7%
Cigarette Smoke
7%
Collagen Receptor
7%
Cytokine Production
15%
Disease Severity
7%
Homeostasis
7%
Human Respiratory Syncytial Virus
7%
Immunity
15%
Immunoglobulin
100%
Injury
7%
Leukocyte
100%
Lymphocyte
7%
Neutrophil
76%
Neutrophil Response
7%
Pneumonia
7%
Receptor
100%
Respiratory Syncytial Virus Infection
7%
Respiratory Tract Inflammation
100%
Silo-Filler's Disease
7%
Smoke
7%
Viral Bronchiolitis
7%
Immunology and Microbiology
Bronchiolitis
9%
CXCL1
9%
Cytokine Production
18%
Homeostasis
9%
Human Respiratory Syncytial Virus
9%
Immunity
18%
Intravenous Immunoglobulin
100%
Leukocyte
100%
Lymphocyte
9%
Neutrophil
54%
Neutrophil Granulocyte
36%
Neutrophil Response
9%
Pulmonary Inflammation
9%
Respiratory Syncytial Virus Infection
9%
Viral Load
18%
Wild Type Mouse
18%