Viral antibody dynamics in a chiropteran host.

Kate S Baker1,2 Richard Suu-Ire3 Jennifer Barr4 David T S Hayman5 Christopher C Broder6 Daniel L Horton7 Christopher Durrant2 Pablo R Murcia8 Andrew A Cunningham2 James L N Wood1
Affiliations 8 institutions
  1. Disease Dynamics Unit, University of Cambridge, Cambridge, UK, CB3 0ES.
  2. Institute of Zoology, Zoological Society of London, London, UK, NW1 4RY.
  3. Wildlife Division, Forestries Commission, Accra, Ghana, PO Box 239.
  4. Australian Animal Health Laboratories, Commonwealth Scientific and Industrial Research Organisation, Geelong, Vic, Australia, 3219.
  5. Department of Biology, Colorado State University, Fort Collins, CO, USA, 80523.
  6. Department of Microbiology and Immunology, Uniformed Services University of the Health Sciences, Bethesda, MD, USA, 20814-4799.
  7. Wildlife Zoonoses and Vector-Borne Diseases Research Group, Animal Health and Veterinary Laboratories Agency, Surrey, UK, KT15 3NB.
  8. College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, UK, G12 8QQ.

Abstract

Bats host many viruses that are significant for human and domestic animal health, but the dynamics of these infections in their natural reservoir hosts remain poorly elucidated. In these, and other, systems, there is evidence that seasonal life-cycle events drive infection dynamics, directly impacting the risk of exposure to spillover hosts. Understanding these dynamics improves our ability to predict zoonotic spillover from the reservoir hosts. To this end, we followed henipavirus antibody levels of >100 individual E. helvum in a closed, captive, breeding population over a 30-month period, using a powerful novel antibody quantitation method. We demonstrate the presence of maternal antibodies in this system and accurately determine their longevity. We also present evidence of population-level persistence of viral infection and demonstrate periods of increased horizontal virus transmission associated with the pregnancy/lactation period. The novel findings of infection persistence and the effect of pregnancy on viral transmission, as well as an accurate quantitation of chiropteran maternal antiviral antibody half-life, provide fundamental baseline data for the continued study of viral infections in these important reservoir hosts.

Supporting text Virus Host Location
Hendra virus 44 immune response 4 infection persistence 1 Luminex 2 maternal immunity 1 Nipah virus 55 paramyxoviruses 3 serology 50 zoonosis 116 Chiroptera 371 Animals 1948 Antibodies, Viral 212 Female 289 Ghana 8 Henipavirus 18 Henipavirus Infections 65 Lactation 6 Longitudinal Studies 17 Male 224 Pregnancy 12 Seasons 47

Evidence records

2 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE1594
Key finding

Henipavirus antibodies were measured in over 100 individual E. helvum bats, demonstrating maternal antibodies and their persistence over time.

Virus
Host
Location
Not specified
Supporting text

We followed henipavirus antibody levels of >100 individual E. helvum in a closed, captive, breeding population over a 30‑month period, using a powerful novel antibody quantitation method. We demonstrate the presence of maternal antibodies in this system and accurately determine their longevity.

Method
antibody quantitation method
Sample type
serum
Evidence type
1 records
OVE1595
Key finding

Henipavirus infection persists at the population level in E. helvum bats, with increased horizontal transmission during pregnancy and lactation.

Virus
Host
Location
Not specified
Supporting text

We followed henipavirus antibody levels of >100 individual E. helvum in a closed, captive, breeding population over a 30-month period, using a powerful novel antibody quantitation method. We also present evidence of population-level persistence of viral infection and demonstrate periods of increased horizontal virus transmission associated with the pregnancy/lactation period.

Method
longitudinal antibody quantitation | serological monitoring over 30 months
Sample type
bat sera