The Role of Toll-like Receptor 4 in Environmental Airway Injury in Mice
- 15 July 2004
- journal article
- research article
- Published by American Thoracic Society in American Journal of Respiratory and Critical Care Medicine
- Vol. 170 (2) , 126-132
- https://doi.org/10.1164/rccm.200311-1499oc
Abstract
Inhalation of toxins commonly found in air pollution contributes to the development and progression of asthma and environmental airway injury. In this study, we investigated the requirement of toll-like receptor 4 (TLR4) in mice for pulmonary responses to three environmental toxins: aerosolized lipopolysaccharide, particulate matter (residual oil fly ash), and ozone. The physiologic and biologic responses to these toxins were evaluated by the extent of airway responsiveness, neutrophil recruitment to the lower respiratory tract, changes in inflammatory cytokines, and the concentration of protein in the lavage fluid. Genetically engineered, TLR4-deficient mice (C57BL/6TLR4−/−) were unresponsive to inhaled lipopolysaccharide, except for minimal increases in some inflammatory cytokines. In contrast, C57BL/6TLR4−/− mice did not differ from wild-type mice in their airway response to instilled residual oil fly ash or acute ozone exposure; however, we found that, despite a robust inflammatory response, C57BL/6TLR4−/− mice are protected against the development of airway hyperresponsiveness after subchronic ozone exposure. These data demonstrate in the mouse that the requirement of TLR4 for pulmonary inflammation depends on the nature of the toxin and appears specific to toxin and exposure conditions.Keywords
This publication has 41 references indexed in Scilit:
- Identification of Lps2 as a key transducer of MyD88-independent TIR signallingNature, 2003
- CD19 regulates innate immunity by the toll-like receptor RP105 signaling in B lymphocytesBlood, 2003
- The Extra Domain A of Fibronectin Activates Toll-like Receptor 4Journal of Biological Chemistry, 2001
- Human Alveolar Macrophage Responses to Air Pollution Particulates Are Associated with Insoluble Components of Coarse Material, Including Particulate EndotoxinToxicology and Applied Pharmacology, 2001
- MOUSE MODELS OF AIRWAY RESPONSIVENESS: Physiological Basis of Observed Outcomes and Analysis of Selected Examples Using These Outcome IndicatorsAnnual Review of Physiology, 1999
- Linkage analysis of susceptibility to ozone-induced lung inflammation in inbred miceNature Genetics, 1997
- Metal and Sulfate Composition of Residual Oil Fly Ash Determines Airway Hyperreactivity and Lung Injury in RatsEnvironmental Research, 1997
- SOLUBLE TRANSITION METALS MEDIATE RESIDUAL OIL FLY ASH INDUCED ACUTE LUNG INJURYJournal of Toxicology and Environmental Health, 1997
- Stimulation of Human and Rat Alveolar Macrophages by Urban Air Particulates: Effects on Oxidant Radical Generation and Cytokine ProductionToxicology and Applied Pharmacology, 1996
- Role of Endotoxin in Tumor Necrosis Factor a Expression from Alveolar Macrophages Treated with Urban Air ParticlesExperimental Lung Research, 1996