Production and Release of Antimicrobial and Immune Defense Proteins by Mammary Epithelial Cells following Streptococcus uberis Infection of Sheep

Author:

Addis Maria Filippa1,Pisanu Salvatore1,Marogna Gavino2,Cubeddu Tiziana13,Pagnozzi Daniela1,Cacciotto Carla13,Campesi Franca4,Schianchi Giuseppe2,Rocca Stefano3,Uzzau Sergio14

Affiliation:

1. Porto Conte Ricerche Srl, Tramariglio, Alghero (SS), Italy

2. Istituto Zooprofilattico della Sardegna G. Pegreffi, Sassari, Italy

3. Dipartimento di Medicina Veterinaria, Università degli Studi di Sassari, Sassari, Italy

4. Dipartimento di Scienze Biomediche, Università degli Studi di Sassari, Sassari, Italy

Abstract

ABSTRACT Investigating the innate immune response mediators released in milk has manifold implications, spanning from elucidation of the role played by mammary epithelial cells (MECs) in fighting microbial infections to the discovery of novel diagnostic markers for monitoring udder health in dairy animals. Here, we investigated the mammary gland response following a two-step experimental infection of lactating sheep with the mastitis-associated bacterium Streptococcus uberis . The establishment of infection was confirmed both clinically and by molecular methods, including PCR and fluorescent in situ hybridization of mammary tissues. Proteomic investigation of the milk fat globule (MFG), a complex vesicle released by lactating MECs, enabled detection of enrichment of several proteins involved in inflammation, chemotaxis of immune cells, and antimicrobial defense, including cathelicidins and calprotectin (S100A8/S100A9), in infected animals, suggesting the consistent involvement of MECs in the innate immune response to pathogens. The ability of MECs to produce and release antimicrobial and immune defense proteins was then demonstrated by immunohistochemistry and confocal immunomicroscopy of cathelicidin and the calprotectin subunit S100A9 on mammary tissues. The time course of their release in milk was also assessed by Western immunoblotting along the course of the experimental infection, revealing the rapid increase of these proteins in the MFG fraction in response to the presence of bacteria. Our results support an active role of MECs in the innate immune response of the mammary gland and provide new potential for the development of novel and more sensitive tools for monitoring mastitis in dairy animals.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

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