Skip to main navigation Skip to search Skip to main content

Serologic Evidence of Human Exposure to Bat-Borne Zoonotic Paramyxoviruses, Cambodia

  • Neil Mittal
  • , Spencer L. Sterling
  • , Phireak Hip
  • , Dolyce H.W. Low
  • , Piseth Ly
  • , Menghou Mao
  • , Pidor Ouch
  • , Adrian C. Paskey
  • , Lianying Yan
  • , Alan Hitch
  • , Gavin J.D. Smith
  • , Jeffery Hertz
  • , Andrew G. Letizia
  • , Ian H. Mendenhall
  • , Eric D. Laing*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Fruit bats in the genus Pteropus are the natural reservoirs for zoonotic paramyxoviruses, notably henipaviruses and pararubulaviruses, which are found across Southeast Asia and Oceania. The genetic and antigenic diversity of viruses in both genera, and region specificity, are ill-defined, limiting health security measures aimed at minimizing spillover. For example, Nipah virus has been isolated from bats in the Battambang province of western Cambodia, and surveys suggest bat foraging behaviors occur in close proximity to human settlements. However, there have been no historical cases of Nipah virus in Cambodia. Here, we use a multiplex microsphere immunoassay to identify cryptic human exposure to selected henipaviruses and pararubulaviruses in Cambodia. Convalescent human sera from persons presenting with acute respiratory illness were screened to detect the presence or absence of antibodies reactive with attachment glycoprotein antigens from Nipah virus, Hendra virus, Cedar virus, and Ghana virus, and a hemagglutinin-neuraminidase antigen from Menangle virus. In this sero-survey, we detected antibodies that were specifically reactive with Cedar virus and Menangle virus, including one serum sample that neutralized a recombinant Cedar virus. Additionally, we detected a pattern of cross-reactivity with Hendra virus, Cedar virus, and Ghana virus, suggesting previous infection by an antigenically-related henipavirus. We did not detect high antibody reactivity with the NiV glycoprotein. Future studies should expand serological surveillance for these transboundary pathogens, including genetic surveillance to aid in henipavirus discovery, and focused biosurveillance where interfaces with livestock and humans occur.

Original languageEnglish
Article number1146
JournalViruses
Volume17
Issue number8
DOIs
StatePublished - Aug 2025

Keywords

  • Cambodia
  • Cedar virus
  • Menangle virus
  • henipaviruses
  • multiplex serology
  • surveillance

Fingerprint

Dive into the research topics of 'Serologic Evidence of Human Exposure to Bat-Borne Zoonotic Paramyxoviruses, Cambodia'. Together they form a unique fingerprint.

Cite this