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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.
Introduction:
Pneumonia remains the leading infectious cause of death in children under five, especially in low-resource settings. Reducing mortality requires rapid, accessible, and reliable diagnostic tools. In this regard, the loop-mediated isothermal amplification (LAMP) technique has emerged as a fast and efficient alternative for simple pathogen detection. This study aimed to standardise and optimize a LAMP assay for detecting the main bacteria causing pneumonia in children, including Streptococcus pneumoniae, Staphylococcus aureus, Haemophilus influenzae, Klebsiella pneumoniae, and Mycoplasmoides pneumoniae using a simple visual readout.
Methods:
Several fluorescent and colorimetric dyes were evaluated to identify those providing a clear readout visible to the naked eye. Once achieved, detection conditions for each pathogen in the panel were optimized, and the feasibility of the assay was assessed using respiratory clinical samples, including both confirmed positives and negatives for the bacteria targeted in the panel.
Results And Discussion:
SYBR Safe, Calcein-Mn2+, and SYTO 9 alone did not show a clear differentiation between positive and negative reactions. In contrast, the combination of hydroxynaphthol blue (HNB) and SYTO 9 proved suitable, providing a clear visual readout to the naked eye after optimization of concentrations and reaction conditions. The selected concentrations were 341.25 μM HNB and 0.75 μM SYTO 9, which enabled clear and stable fluorescence-based visualization of LAMP results, remaining visible for several months. The technique showed low detection limits: 3.9 ×103 CFU/mL for S. pneumoniae, 1.7 ×105 CFU/mL for S. aureus, 8.2 ×103 CFU/mL for H. influenzae, and 1.27 ×103 genome copies/reaction for M. pneumoniae. Primers designed to detect K. pneumoniae had high specificity and no cross-reactivity with a sensitivity of 1.5 × 104 CFU/mL. Detection times over 45-50 min may suggest colonization instead of active infection. The evaluation of the technique using clinical samples demonstrated its potential feasibility and applicability in real-world clinical settings. Although standardized under laboratory conditions, this LAMP technique shows promise for detecting major pneumonia-causing bacteria in children and could be particularly valuable in low-resource settings. Its rapid, sensitive, and affordable nature may help improve diagnostics and reduce pneumonia-related mortality. However, larger clinical validation studies are needed to confirm its performance and real-world applicability.
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.
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