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Author Spotlight: Leptospira DNA Detection in Water for Environmental Analysis and Disease Surveillance
Published on: June 14, 2024
Retrospective Molecular Detection and Characterization of Pathogenic Leptospira in the Philippines
Joanna Ina G Manalo1,2, Adeliza Mae L Realingo1, Lei Lanna M Dancel1
1Advanced Molecular Technologies Laboratory (AMTL), Research Institute for Tropical Medicine (RITM), Muntinlupa 1781, Philippines.
Abstract:
Leptospirosis remains a public health concern in the Philippines. Conventional diagnostic methods, including the microscopic agglutination test (MAT) and qPCR, are routinely used for outbreak response and surveillance. However, these methods often yield discordant results due to cross-reactivity, limited sensitivity, or lack of species-level resolution. To address these diagnostic gaps, this study optimized the Boonsilp 16S rRNA PCR assay and applied Sanger sequencing for accurate species identification of Leptospira in 92 archived DNA samples collected between 2018 and 2020. The sensitivity and specificity of the optimized assay were compared with those of MAT and qPCR. Species-level identification was confirmed via sequencing, and a phylogenetic tree was constructed. Among the 92 samples, 46 (50.0%) tested positive by qPCR, 39 (42.4%) by MAT, and 67 (72.8%) by at least one of the two methods. The optimized Boonsilp assay detected Leptospira in 23 samples (25.0%), of which 22 were also qPCR positive. Twenty-one samples were confirmed as L. interrogans, one as L. borgpetersenii, and one as an unclassified Leptospira species. One sample undetected by both MAT and qPCR tested positive using the optimized assay. Compared to the composite reference, the Boonsilp assay showed 32.8% sensitivity and 96.0% specificity. Phylogenetic analysis revealed multiple L. interrogans strains, including those closely related to reference sequences of Copenhageni, Manilae, and Canicola. While the optimized Boonsilp PCR assay demonstrates diagnostic value as an adjunct molecular tool to qPCR and MAT supporting species-level identification during outbreak surveillance, this warrants further validation in freshly isolated DNA samples.
Insights
This study optimized a new PCR assay for Leptospira species identification in the Philippines. The assay aids in diagnosing leptospirosis, improving surveillance and outbreak response when used with existing methods.
Area of Science:
- Microbiology
- Molecular Diagnostics
- Public Health
Background:
- Leptospirosis is a significant public health issue in the Philippines.
- Current diagnostic methods like microscopic agglutination test (MAT) and qPCR have limitations, including discordant results and lack of species-level identification.
Purpose of the Study:
- To optimize the Boonsilp 16S rRNA PCR assay for accurate Leptospira species identification.
- To evaluate the diagnostic performance of the optimized assay against MAT and qPCR.
Main Methods:
- Optimized the Boonsilp 16S rRNA PCR assay.
- Applied Sanger sequencing for species confirmation.
- Compared the assay's sensitivity and specificity with MAT and qPCR using 92 archived DNA samples.
- Constructed a phylogenetic tree for strain analysis.
Main Results:
- The optimized Boonsilp assay detected Leptospira in 25% of samples, identifying 21 samples as L. interrogans, one as L. borgpetersenii, and one as unclassified Leptospira.
- The assay showed 32.8% sensitivity and 96.0% specificity compared to a composite reference.
- Phylogenetic analysis revealed diverse L. interrogans strains, including those related to Copenhageni, Manilae, and Canicola.
Conclusions:
- The optimized Boonsilp PCR assay serves as a valuable adjunct molecular tool for Leptospira species identification in outbreak surveillance.
- Further validation with freshly isolated DNA samples is recommended to fully establish its diagnostic utility.

