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.

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.