Aspergillus fumigatus germ tube growth and not conidia ingestion induces expression of inflammatory mediator genes in the human lung epithelial cell line A549

Author:

Bellanger Anne-Pauline1,Millon Laurence1,Khoufache Khaled2,Rivollet Danièle2,Bièche Ivan3,Laurendeau Ingrid3,Vidaud Michel3,Botterel Françoise2,Bretagne Stéphane2

Affiliation:

1. UMR 6249 CNRS, Laboratoire de Parasitologie-Mycologie, Hôpital Jean Minjoz, Besançon, France

2. UMR BIPAR 956, Laboratoire de Parasitologie-Mycologie, Hôpital Henri Mondor and Université Paris-Est, Créteil, France

3. UMR INSERM 745, Université Paris Descartes, Faculté des Sciences Pharmaceutiques et Biologique, Paris, France

Abstract

Inhalation of conidia is the main cause of invasive pulmonary aspergillosis (IPA) and the respiratory epithelium is the first line of defence. To explore the triggering factor for the inflammatory response to Aspergillus fumigatus, the species mainly responsible for IPA, this study analysed the differential expression of three inflammatory genes in A549 cells after challenge with live and killed conidia. The influence of steroids, one of the main risk factors for developing IPA, was also investigated. Quantification of mRNAs of the inflammatory mediator genes encoding interleukin (IL)-8, tumour necrosis factor (TNF)-α and granulocyte–monocyte colony-stimulating factor (GM-CSF) was carried out using real-time PCR. Ingestion rates were studied for the conidia of A. fumigatus and Penicillium chrysogenum using a fluorescence brightener. Similar results were obtained for both species, with ingestion rates ranging from 35 to 40 %. Exposure of A549 cells to live A. fumigatus conidia only induced a four- to fivefold increase in the mRNA levels of the three genes, starting 8 h after the initial contact. Both inactivation of live A. fumigatus conidia and treatment by dexamethasone (10−7 M) prevented the overexpression of TNF-α, IL-8 and GM-CSF. Fungal growth, rather than conidia ingestion, appears to be the main stimulus for the production of inflammatory mediators by epithelial cells, and this production is inhibited by steroid therapy. These results underline the role that the epithelium plays in the innate response against IPA.

Publisher

Microbiology Society

Subject

Microbiology (medical),General Medicine,Microbiology

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