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接触香烟烟雾会破坏呼吸道上皮细胞中CCL20介导的抗菌活性。

Exposure to Cigarette Smoke Disrupts CCL20-Mediated Antimicrobial Activity in Respiratory Epithelial Cells.

作者信息

Crane-Godreau Mardi A, Maccani Matthew A, Eszterhas Susan K, Warner Sandra L, Jukosky James A, Fiering Steven

机构信息

Department of Microbiology & Immunology, Dartmouth Medical School, Lebanon, NH 03756, USA.

出版信息

Open Immunol J. 2009 Jan 1;2:86-93. doi: 10.2174/1874226200902010086.

Abstract

Cigarette smoke (CS) exposure is known to increase infection rates, but the mechanisms are not well understood. These studies tested the hypothesis that CS exposure would impair antimicrobial activity of apical conditioned media from human airway (BEAS-2B) cultures by reducing induction and release of the antimicrobial peptide CCL20. BEAS-2B cultures were exposed to CS extract and assayed for temporal and physical characteristics of release as well as for antimicrobial activity. E. coli were exposed to Beas-2B-conditioned media (BCM) and subsequent bacterial colonies were enumerated. In time course studies TLR-agonist-induced CCL20 transcription and release were rapid, of short duration and release was consistently targeted to the apical/luminal compartment. Cells treated with CS extract had diminished release of CCL20 under both constitutive and toll-like receptor (TLR) agonist stimulating conditions. Exposure of the cells to CS significantly reduced the antimicrobial activity in BCM and neutralizing antibodies to CCL20 brought antibacterial activity back to baseline levels demonstrating that antimicrobial activity in this culture system was primarily attributable to CCL20. These studies add to the understanding of CCL20 as a mucosal antimicrobial and improve insight into a likely mechanism linking infection to CS exposure.

摘要

已知接触香烟烟雾(CS)会增加感染率,但其机制尚未完全明确。这些研究检验了以下假设:接触CS会通过减少抗菌肽CCL20的诱导和释放,损害人呼吸道(BEAS-2B)培养物顶端条件培养基的抗菌活性。将BEAS-2B培养物暴露于CS提取物中,并检测其释放的时间和物理特性以及抗菌活性。将大肠杆菌暴露于BEAS-2B条件培养基(BCM)中,随后对细菌菌落进行计数。在时间进程研究中,TLR激动剂诱导的CCL20转录和释放迅速,持续时间短,且释放始终靶向顶端/管腔隔室。在组成性和Toll样受体(TLR)激动剂刺激条件下,用CS提取物处理的细胞中CCL20的释放均减少。细胞暴露于CS会显著降低BCM中的抗菌活性,而CCL20的中和抗体可使抗菌活性恢复到基线水平,这表明该培养系统中的抗菌活性主要归因于CCL20。这些研究增进了对CCL20作为一种粘膜抗菌物质的理解,并有助于深入了解感染与接触CS之间可能的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3495/2788948/c841d5a5897f/nihms146575f1.jpg

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