血小板活化因子受体
医学
血小板活化因子
流式细胞术
肺炎链球菌
粘附
免疫学
免疫染色
呼吸上皮
受体
肺
男科
内科学
生物
微生物学
化学
免疫组织化学
敌手
抗生素
有机化学
作者
Jonathan Grigg,E. Haydn Walters,Sukhwinder Singh Sohal,Richard Wood‐Baker,David W. Reid,Cang‐Bao Xu,Lars Edvinsson,Mathieu C. Morissette,Martin R. Stämpfli,Michael Kirwan,Lee Koh,Reetika Suri,Naseem Mushtaq
出处
期刊:Thorax
[BMJ]
日期:2012-05-01
卷期号:67 (10): 908-913
被引量:67
标识
DOI:10.1136/thoraxjnl-2011-200835
摘要
Background
Exposure to cigarette smoke (CS) is associated with increased risk of pneumococcal infection. The mechanism for this association is unknown. We recently reported that the particulate matter from urban air simulates platelet-activating factor receptor (PAFR)-dependent adhesion of pneumococci to airway cells. We therefore sought to determine whether CS stimulates pneumococcal adhesion to airway cells. Methods
Human alveolar (A549), bronchial (BEAS2-B), and primary bronchial epithelial cells (HBEpC) were exposed to CS extract (CSE), and adhesion of Streptococcus pneumoniae determined. The role of PAFR in mediating adhesion was determined using a blocker (CV-3988). PAFR transcript level was assessed by quantitative real-time PCR, and PAFR expression by flow cytometry. Lung PAFR transcript level was assessed in mice exposed to CS, and bronchial epithelial PAFR expression assessed in active-smokers by immunostaining. Results
In A549 cells, CSE 1% increased pneumococcal adhesion (p<0.05 vs control), PAFR transcript level (p<0.01), and PAFR expression (p<0.01). Pneumococcal adhesion to A549 cells was attenuated by CV-3988 (p<0.001). CSE 1% stimulated pneumococcal adhesion to BEAS2-B cells and HBEpC (p<0.01 vs control). CSE 1% increased PAFR expression in BEAS2-B (p<0.01), and in HBEpC (p<0.05). Lung PAFR transcript level was increased in mice exposed to CS in vivo (p<0.05 vs room air). Active smokers (n=16) had an increased percentage of bronchial epithelium with PAFR-positive cells (p<0.05 vs never smokers, n=11). Conclusion
CSE stimulates PAFR-dependent pneumococcal adhesion to lower airway epithelial cells. We found evidence that CS increases bronchial PAFR in vivo.
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