Diesel exhaust particulate induces airway hyperresponsiveness in a murine model: Essential role of GM-CSF☆☆☆

鼻腔给药 医学 免疫学 毒蕈碱乙酰胆碱受体 乙酰胆碱 气道阻力 哮喘 药理学 内科学 受体
作者
Ken Ohta,Naomi Yamashita,Makoto Tajima,Takashi Miyasaka,Junichi Nakano,Mikio Nakajima,Akira Ishii,Tadashi Horiuchi,Kenji Mano,Terumasa Miyamoto
出处
期刊:The Journal of Allergy and Clinical Immunology [Elsevier]
卷期号:104 (5): 1024-1030 被引量:117
标识
DOI:10.1016/s0091-6749(99)70084-9
摘要

Background: Inhaled pollutants were recently shown to be responsible for an increased incidence of airway allergic diseases, including asthma. A common feature of all forms of asthma is airway hyperresponsiveness. Objective: Our purpose was to elucidate the effects of diesel exhaust particulate (DEP), one of the most prevalent inhaled pollutants, on airway responsiveness. Methods: A/J and C57Bl/6 mice were used; the former are genetically predisposed to be hyperresponsive to acetylcholine, whereas the latter are not. DEP was administered intranasally for 2 weeks, after which pulmonary function was analyzed by whole-body plethysmography. Results: Intranasal administration of DEP increased airway responsiveness to acetylcholine in both A/J and C57Bl/6 mice and induced displacement of ciliated epithelial cells by mucus-secreting Clara cells. The effect was mediated by M 3 muscarinic receptors. Acetylcholine-evoked bronchial constriction was reversed by administration of terbutaline, a β 2-adrenergic antagonist, which is also characteristic of human asthma. Intranasal administration of antibody raised against GM-CSF abolished DEP-evoked increases in airway responsiveness and Clara cell hyperplasia. The antibody raised against IL-4 also inhibited DEP-evoked increases in airway responsiveness. However, it was to a lesser extent compared with antibody against GM-CSF. In addition, DEP stimulated GM-CSF messenger RNA expression in the lung. Conclusion: DEP induces airway hyperresponsiveness by stimulating GM-CSF synthesis. (J Allergy Clin Immunol 1999;104:1024-30.)
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