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A High-throughput Platform for the Screening of Salmonella spp./Shigella spp.
Published on: November 7, 2018
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Using next-generation sequencing to develop a Shigella species threshold and profile faecal samples from suspected
1Faculty of Health and Applied Sciences, University of the West of England, Bristol, UK. Ann7.Smith@uwe.ac.uk.
Folia Microbiologica
|February 10, 2021
Summary
This study developed new diagnostic tools for diarrhoeal infections, achieving an 89% success rate in identifying pathogens like Shigella and Campylobacter. These tools improve diagnosis for gastrointestinal diseases.
Area of Science:
- Gastroenterology
- Microbiology
- Bioinformatics
Background:
- Diarrhoeal diseases cause significant global mortality, especially in children under 5.
- Current diagnostic methods for key gastrointestinal pathogens have limited success rates.
- Effective diagnosis, treatment, and infection control are crucial for managing diarrhoeal diseases.
Purpose of the Study:
- To develop and validate reliable diagnostic tools for identifying common gastrointestinal pathogens.
- To improve the accuracy and efficiency of diagnosing diarrhoeal infections.
- To establish a novel threshold for Shigella spp. to differentiate healthy and unhealthy gut communities.
Main Methods:
- Blind analysis of 592 patient samples using advanced diagnostic tools.
- Abundance profiling of bacterial species including Shigella sonnei, Bacteroides, Campylobacter spp., Clostridium difficile, and Salmonella spp.
- Development of a DMBiome model integrating pathogen thresholds and emerging enteropathogens.
Main Results:
- High positive outcome rate of 89% for diagnosing diarrhoeal infections.
- Identified Shigella sonnei as the most abundant species (15%) and Bacteroides as the top genus (26%).
- Established a Shigella spp. threshold of 5.32% for community health assessment.
Conclusions:
- The developed tools offer effective and reliable diagnosis for diarrhoeal infections.
- The study highlights significant differences in microbial abundance between healthy and diarrhoeal states.
- The DMBiome model provides a comprehensive approach to diagnosing gastrointestinal infections.

