Differential Sensitivity of Differentiated Epithelial Cells to Respiratory Viruses Reveals Different Viral Strategies of Host Infection

Author:

Goris Katherina1,Uhlenbruck Sabine1,Schwegmann-Wessels Christel1,Köhl Wiebke1,Niedorf Frank2,Stern Michael3,Hewicker-Trautwein Marion4,Bals Robert5,Taylor Geraldine6,Braun Armin7,Bicker Gerd3,Kietzmann Manfred2,Herrler Georg1

Affiliation:

1. Institutes of Virology

2. Pharmacology

3. Physiology

4. Pathology, University of Veterinary Medicine Hannover, Hannover, Germany

5. Department of Internal Medicine, Division for Pulmonary Diseases, Philipps-Universität Marburg, Marburg, Germany

6. Institute for Animal Health, Compton, Newbury, Berkshire RG20 7NN, United Kingdom

7. Fraunhofer Institute of Toxicology and Experimental Medicine, 30625 Hannover, Germany

Abstract

ABSTRACT To address the initiation of virus infection in the respiratory tract, we established two culture systems for differentiated bovine airway epithelial cells (BAEC). Filter-grown BAEC differentiated under air-liquid interface (ALI) conditions to generate a pseudo-stratified mucociliary epithelium. Alternatively, precision-cut lung slices (PCLS) from the bovine airways were generated that retained the original composition and distribution of differentiated epithelial cells. With both systems, epithelial cells were readily infected by bovine parainfluenza virus 3 (BPIV3). Ciliated cells were the most prominent cell type affected by BPIV3. Surprisingly, differentiated BAEC were resistant to infection by bovine respiratory syncytial virus (BRSV), when the virus was applied at the same multiplicity of infection that was sufficient for infection by BPIV3. In the case of PCLS, infection by BRSV was observed in cells located in lower cell layers but not in epithelial cells facing the lumen of the airways. The identity of the infected cells could not be determined because of a lack of specific antibodies. Increasing the virus titer 30-fold resulted in infection of the ALI cultures of BAEC, whereas in PCLS the ciliated epithelium was still refractory to infection by BRSV. These results indicate that differentiated BAEC are readily infected by BPIV3 but rather resistant to infection by BRSV. Disease caused by BRSV may require that calves encounter environmental stimuli that render BAEC susceptible to infection.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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