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April 5, 2026Frontiers in Veterinary Science2 citationsOpen Access

Yellow fever virus infection in non-human primates: a systematic review and meta-analysis of prevalence, seroprevalence, and epizootic case reports (1950–2025)

DBD. Katterine Bonilla-AldanaJBJorge Luis Bonilla-AldanaDCDayana M. Calle-Hernández

Key Points

  • This study aims to systematically review and analyze data on yellow fever virus infection in non-human primates, focusing on prevalence and seroprevalence.
  • Conducted a systematic search in Scopus, PubMed, and other databases from 1950 to 2025.
  • Included observational studies reporting yellow fever virus prevalence or seroprevalence in non-human primates.
  • Performed random-effects meta-analyses with subgroup analyses based on geographic region, diagnostic method, and primate genus.
  • Thirty-nine articles in total assessed 7,183 non-human primates, with 28 included in meta-analyses.
  • Pooled molecular prevalence was 30.7% by RT-PCR and 43.4% by immunohistochemistry.
  • Seroprevalence estimates ranged from 5.0% to 36.4%, with higher rates in howler and titi monkeys.
  • All reported individual cases of yellow fever virus infection were fatal, often linked to severe hepatic and multisystemic pathology.

Abstract

Introduction Yellow fever remains a major mosquito-borne viral disease of global public health and ecological concern. Non-human primates (NHPs) are central to the sylvatic transmission cycle and serve as key sentinels of viral circulation. Yet, evidence on yellow fever virus (YFV) infection in NHPs is dispersed and has not been synthesized comprehensively. Objective To systematically review and meta-analyze global data on the prevalence and seroprevalence of YFV infection in NHP, and to summarize molecular, clinical, and pathological findings from reported epizootic cases. Methods We conducted a systematic search of Scopus, PubMed, Web of Science, and SciELO for studies published between 1950 and 2025, following PRISMA guidelines. Observational studies reporting YFV prevalence or seroprevalence in NHPs were included in the quantitative syntheses, and individual case reports were analyzed separately. Random-effects meta-analyses were performed, with subgroup analyses by geographic region, diagnostic method, and primate genus. Results Thirty-nine articles assessing 7,183 NHP met the inclusion criteria; 28 contributed to meta-analyses, and 10 provided 19 individual case reports. Pooled molecular prevalence by RT-PCR was 30.7%, and prevalence by immunohistochemistry was 43.4%, both with substantial between-study heterogeneity. Seroprevalence estimates ranged from 5.0 to 36.4% across assays and settings. Higher infection metrics were observed in howler monkeys and titi monkeys. All reported individual cases were fatal and predominantly associated with severe hepatic and multisystemic pathology. Most data originated from the Americas, particularly Brazil, with limited representation from African endemic regions. Conclusion YFV infection in NHP is widespread, often severe, and epidemiologically significant. Our findings underscore the critical sentinel role of NHPs and highlight the need to strengthen integrated One Health surveillance systems to inform prevention and control strategies, particularly in the context of the current resurgence of yellow fever in Latin America and persistent data gaps in Africa.

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Cite This Study

Bonilla-Aldana et al. (2026) studied this question.

synapsesocial.com/papers/69d1fba0a79560c99a0a1b8fhttps://doi.org/10.3389/fvets.2026.1798623
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