Receptor profiling and growth assessment of influenza A virus in porcine mammary and non-mammary tissues and derived cells.

Ulises Barron-Castillo1,2 Nathalie Berube1 Cynthia L Swan1 M Afzal Javed1 Lauren Aubrey1 Jill Trann1,2 Makenzie Gidych1 Sauhard Shrivastava1,2 Kaushal Baid1 Arinjay Banerjee1,2 Yan Zhou1,2
Affiliations 2 institutions
  1. Vaccine and Infectious Disease Organization (VIDO), University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
  2. Department of Veterinary Microbiology, Western College of Veterinary Medicine, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

Abstract

Highly pathogenic avian influenza (HPAI) virus clade 2.3.4.4b genotype B3.13 infected the mammary gland of dairy cattle; the new tissue tropism and host heightened concern about its ability to cross species barriers with zoonotic potential. Pigs play a key role in influenza A virus (IAV) adaptation, serving as a "mixing vessel" for the emergence of reassortants. The susceptibility of porcine mammary gland to HPAI infection remains unexplored. In this study, we profiled IAV receptors in porcine mammary gland as well as respiratory tract tissues. Additionally, we evaluated the binding capacity of IAVs to these tissues. Furthermore, we isolated primary cells from porcine mammary gland and respiratory tract, and immortalized them. We examined the growth potential of IAV isolates from bovine, avian, swine, and human on these cells. We showed that porcine mammary gland displays both SA-α2,3 and SA-α2,6, and that IAVs bind to mammary gland tissues with variable affinities. While bovine H5N1 virus replicates efficiently in mammary gland and respiratory tract cells, replication of other IAVs in mammary epithelial cells is moderate but is efficient in respiratory cells. These findings suggest that porcine mammary gland could support the infection by HPAI 2.3.4.4b genotype B3.13. Our findings expand the current understanding of IAV tissue tropism in swine by revealing that the porcine mammary gland may serve as an alternative and previously overlooked replication site for both avian and mammalian-origin viruses. Given the increasing frequency of interspecies spillover events and expanding host range of HPAI H5N1, our finding that mammary epithelial cells have an intrinsic capacity to support replication of diverse IAV strains provides new insight into the porcine mammary gland as a potential replication and reassortment site for IAV.

Supporting text Virus Host Location
HPAI 19 mammary gland 2 respiratory tract 2 sialic acid receptor 16 virus binding 1

Evidence records

4 total
Experimental Infection
3 records · 1 evidence types
Evidence type
3 records
OVE11760
Key finding

Bovine H5N1 (HPAI 2.3.4.4b genotype B3.13) replicates efficiently in porcine mammary gland and respiratory tract cells.

Virus
Host
Experimental system Experimental system
Location
Not specified
Supporting text

While bovine H5N1 virus replicates efficiently in mammary gland and respiratory tract cells,

Method
virus growth/replication assay in cell culture
Experimental system
in vitro infection of primary and immortalized porcine cells
OVE11759
Key finding

Influenza A viruses bind to porcine mammary gland tissues with variable affinities.

Virus
Host
Experimental system
Location
Not specified
Supporting text

We showed that porcine mammary gland displays both SA-α2,3 and SA-α2,6, and that IAVs bind to mammary gland tissues with variable affinities.

Method
receptor profiling | virus-tissue binding assay
Sample type
porcine mammary gland tissues
Experimental system
ex vivo tissue binding assay
OVE11761
Key finding

IAV isolates from bovine, avian, swine, and human show moderate replication in porcine mammary epithelial cells but efficient replication in porcine respiratory cells.

Virus
Host
Experimental system Experimental system
Location
Not specified
Supporting text

replication of other IAVs in mammary epithelial cells is moderate but is efficient in respiratory cells.

Method
virus growth/replication assay in cell culture
Experimental system
in vitro infection of primary and immortalized porcine cells
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE11758
Key finding

Porcine mammary gland tissue displays both SA-α2,3 and SA-α2,6 sialic acid receptors relevant to influenza A virus entry.

Virus
Host
Experimental system
Location
Not specified
Supporting text

We showed that porcine mammary gland displays both SA-α2,3 and SA-α2,6, and that IAVs bind to mammary gland tissues with variable affinities.

Method
receptor profiling | virus-tissue binding assay
Receptors
SA-α2,3 | SA-α2,6