Characterization of fungal exposure and dectin-1 expression in healthy horses and horses with severe asthma

Author:

Di Pietro Rebecca1,Dubuc Valérie1,Manguin Estelle1,Giroux-Lafond Roxane1,Bédard Christian2,Boivin Roxane1,Lavoie Jean-Pierre1,Vesper Stephen J.3,Leclere Mathilde1

Affiliation:

1. Department of Clinical Sciences, Faculté de Médecine Vétérinaire, Université de Montréal, Saint-Hyacinthe, Québec, Canada

2. Department of Pathology and Microbiology, Faculté de Médecine Vétérinaire, Université de Montréal, Saint-Hyacinthe, Québec, Canada

3. Center for Environmental Measurement and Modeling, U.S. Environmental Protection Agency, Cincinnati, OH

Abstract

Abstract OBJECTIVE To quantify dectin-1 expression in bronchoalveolar lavage fluid (BALF), create polyclonal antibodies against equine dectin-1 and localize it in tissues, and quantify fungal exposure in pastured and stabled asthmatic and nonasthmatic horses. SAMPLES BALF samples from 6 controls and 6 horses with severe asthma. Stored lung and nasal wash samples. PROCEDURES Dectin-1 expression was quantified by quantitative PCR (qPCR). Purified peptide from equine dectin-1 was used to generate polyclonal antibodies and was confirmed with immunological testing. Fungal exposure was quantified in BALF samples by counting fungal-like intracellular particles in phagocytic cells, by qPCR quantification of the “universal” 18S rRNA fungal gene, and by quantifying 36 specific fungi in equine and dust samples using qPCR assays. RESULTS Equine dectin-1 was localized in tissues and cells, and functional isoforms were upregulated significantly in BALF after stabling. Pastured horses from both groups had low levels of fungi in BALF, and there was a significant increase in some specific fungi, most notably for Eurotium amstelodami, Wallemia sebi, and Aspergillus niger after stabling. However, stabled asthmatic horses had fewer phagocytized particles, less 18S rRNA signal, and fewer specific fungi compared to nonasthmatic horses. CLINICAL RELEVANCE Stabling increases exposure to fungi, but asthmatic horses had fewer fungi reaching their lower airways, presumably resulting from congestion and narrowing of the airways. Exposure to fungi could contribute to airway inflammation by increasing dectin-1 functional isoforms, and exposure to indoor molds should be avoided.

Publisher

American Veterinary Medical Association (AVMA)

Subject

General Veterinary,General Medicine

Reference2 articles.

1. Equine Respiratory Tissue Biobank de Respiratoire of the Université de Montréal Accessed https btre ca en;Laboratoire;Biologie Cellulaire,2021

2. Equine Respiratory Tissue Biobank de Respiratoire of the Université de Montréal Accessed https btre ca en;Laboratoire;Biologie Cellulaire,2021

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