Development and optimization of an easy to interpret loop-mediated isothermal amplification (LAMP) assay for the

Arturo Martínez-Trejo1,2, Andrea Vergara2,3,4, Giulia Gatti5

  • 1Barcelona Institute for Global Health (ISGlobal), Barcelona, Spain.

Abstract

Insights

A new loop-mediated isothermal amplification (LAMP) assay offers rapid, visual detection of key pneumonia-causing bacteria in children. This cost-effective diagnostic tool shows promise for improving child health, especially in resource-limited settings.

Area of Science:

  • Molecular Diagnostics
  • Microbiology
  • Pediatric Infectious Diseases

Background:

  • Pneumonia is a leading infectious cause of mortality in children under five, particularly in low-resource settings.
  • Rapid, accessible, and reliable diagnostic tools are crucial for reducing pneumonia-related deaths.
  • Loop-mediated isothermal amplification (LAMP) presents a promising alternative for simple and efficient pathogen detection.

Purpose of the Study:

  • To standardize and optimize a visual LAMP assay for detecting common pediatric pneumonia-causing bacteria.
  • To identify optimal conditions and reagents for a clear, naked-eye readout.
  • To evaluate the assay's feasibility using clinical respiratory samples.

Main Methods:

  • Evaluation of various fluorescent and colorimetric dyes for visual detection.
  • Optimization of reaction conditions and reagent concentrations (HNB and SYTO 9).
  • Assessment of assay performance using characterized clinical samples.

Main Results:

  • A combination of hydroxynaphthol blue (HNB) and SYTO 9 provided a stable, visible fluorescence readout.
  • The assay demonstrated low detection limits for *Streptococcus pneumoniae*, *Staphylococcus aureus*, *Haemophilus influenzae*, and *Mycoplasmoides pneumoniae*.
  • High specificity was observed for *Klebsiella pneumoniae* detection, with a sensitivity of 1.5 × 10^4 CFU/mL.

Conclusions:

  • The optimized visual LAMP assay is a sensitive, rapid, and potentially affordable tool for detecting major pneumonia pathogens in children.
  • The technique shows significant promise for improving diagnostics in resource-limited settings.
  • Further large-scale clinical validation is recommended to confirm its real-world applicability.