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March 4, 2026The Journal of Infectious Diseases1 citationsOpen Access

Tracking Plasmodium knowlesi through faecal DNA for monitoring zoonotic transmission in wild macaques across Southeast and South Asia

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DWDhammika Leshan WannigamaMAMohan AmarasiriPPPhatthranit PhattharapornjaroenChulabhorn Graduate Institute

Key Points

  • The research aims to assess the presence of Plasmodium knowlesi DNA in wild macaques through non-invasive faecal sampling.
  • Collected 4,752 faecal samples from wild macaques in nine endemic Southeast and South Asian countries.
  • Used PCR (polymerase chain reaction) techniques to detect P. knowlesi DNA in samples.
  • Analyzed positivity rates of Plasmodium knowlesi DNA across different countries.
  • Detected P. knowlesi DNA in 390 faecal samples, indicating an overall positivity rate of 8.2%.
  • Reported positivity rates ranging from 1.4% to 18.4% across different locations.
  • Validated faecal sampling as a method for tracking zoonotic malaria in natural conditions.

Abstract

We conducted the non-invasive surveillance of Plasmodium knowlesi in wild macaques using 4,752 faecal samples collected across nine endemic countries. Parasite DNA was detected in 390 samples (8.2%), with positivity rates ranging from 1.4% to 18.4%. This provides the first field-based evidence that P. knowlesi DNA in faeces shed by macaques and present under natural conditions can be detected. These findings validate faecal sampling as a practical and scalable tool for tracking zoonotic-malaria. The results support integration into forest-runoff and rural wastewater surveillance systems, offering new opportunities for early detection of pathogens and environmental monitoring at the human-wildlife interface.

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Cite This Study

Wannigama et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd6ed48f933b5eed9c5fhttps://doi.org/10.1093/infdis/jiag128
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