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铜绿假单胞菌生物膜在存活气道上皮细胞单层上的体外模型。

An in vitro model of Pseudomonas aeruginosa biofilms on viable airway epithelial cell monolayers.

作者信息

Woodworth Bradford A, Tamashiro Edwin, Bhargave Geeta, Cohen Noam A, Palmer James N

机构信息

Department of Otorhinolaryngology-Head and Neck Surgery, University of Pennsylvania Health System, Philadelphia, Pennsylvania, USA.

出版信息

Am J Rhinol. 2008 May-Jun;22(3):235-8. doi: 10.2500/ajr.2008.22.3178.

Abstract

BACKGROUND

Chronic rhinosinusitis (CRS) that is refractory to medical or surgical intervention may involve a particularly resistant form of infection known as a bacterial biofilm. Bacterial biofilms are three-dimensional aggregates of bacteria that often are recalcitrant to antibiotics secondary to physical barrier characteristics. To date, all studies investigating biofilms in CRS have been descriptive in either human or animal tissue. To better understand the interactions of bacterial biofilms with respiratory epithelium, we describe an in vitro model of biofilm sinusitis by establishing mature biofilms on airway epithelial air-liquid interface cultures.

METHODS

Airway epithelial cell cultures were grown on collagen-coated semipermeable support membranes as an air-liquid interface on tissue culture inserts. Confluent air-liquid interface cultures were inoculated with the biofilm-forming PAO-1 strain of Pseudomonas aeruginosa and compared with cultures inoculated with two mutant strains (sad-31 and sad-36) unable to form biofilms. Inoculated tissue transwells were incubated for 20 hours, allowing for biofilm growth. The semipermeable membranes were then harvested and imaged with confocal laser scanning microscopy and scanning electron microscopy.

RESULTS

Microscopic analysis revealed the formation of biofilm-forming towers in the PAO-1 inoculated wells. The bacterial biofilms were supported by a viable airway epithelial cell surface monolayer.

CONCLUSION

This study shows a reliable method for analysis of in vitro interactions of bacterial biofilms and airway epithelium. The experimental manipulation of this air-liquid interface model will help explore novel treatment approaches for bacterial biofilm-associated CRS.

摘要

背景

对药物或手术干预无效的慢性鼻-鼻窦炎(CRS)可能涉及一种特别耐药的感染形式,即细菌生物膜。细菌生物膜是细菌的三维聚集体,由于其物理屏障特性,通常对抗生素具有抗性。迄今为止,所有关于CRS中生物膜的研究都是在人体或动物组织中进行描述性研究。为了更好地理解细菌生物膜与呼吸道上皮的相互作用,我们通过在气道上皮气液界面培养物上建立成熟的生物膜,描述了一种生物膜性鼻窦炎的体外模型。

方法

将气道上皮细胞培养物生长在胶原包被的半透性支持膜上,作为组织培养插入物上的气液界面。将形成生物膜的铜绿假单胞菌PAO-1菌株接种到汇合的气液界面培养物中,并与接种两种不能形成生物膜的突变菌株(sad-31和sad-36)的培养物进行比较。将接种的组织转运小室孵育20小时,以促进生物膜生长。然后收获半透性膜,并用共聚焦激光扫描显微镜和扫描电子显微镜成像。

结果

显微镜分析显示,在接种PAO-1的孔中形成了生物膜形成塔。细菌生物膜由存活的气道上皮细胞表面单层支持。

结论

本研究展示了一种分析细菌生物膜与气道上皮体外相互作用的可靠方法。对该气液界面模型的实验操作将有助于探索细菌生物膜相关CRS的新治疗方法。

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