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Published on: September 12, 2016
Comparative epidemiology of diarrhoeal organisms in high-risk adults using multiplex PCR gastrointestinal panel
Jeffrey Shu1, Hannah Wang2, Anisha Misra2
1Cleveland Clinic Lerner College of Medicine of Case Western Reserve University School of Medicine, Cleveland, OH, USA.
Objectives:
Infectious diarrhoea remains a significant cause of morbidity and mortality in immunocompromised and high-risk populations. However, pathogen-specific epidemiology and diagnostic utility of molecular gastrointestinal panels (GIPs) in these groups remain poorly defined. Our objective was to describe diarrhoeal pathogen distribution across 10 high-risk conditions and evaluate the diagnostic yield of GIPs in these populations to inform the development of improved diagnostic algorithms.
Methods:
We conducted a retrospective observational study analysing all adults (age ≥18 years) tested with a BioFire FilmArray GIP at 12 U.S. hospitals from 2019-2024. We reported observed organism detection rates overall, risk status, and by each of 10 high-risk conditions identified by International Classification of Diseases 10 (ICD-10) codes. Mixed-effects multivariable logistic regression estimated the independent effect of each high-risk condition on organism detection, controlling for sex, location, setting, year, season, and 10 high-risk conditions.
Results:
Among 16 570 patients, (median age 66 years; 65% [10 752/16 570] with ≥1 high-risk condition), pathogens were detected in 22% [3591/16 570]. Enteropathogenic Escherichia coli (EPEC) and norovirus were the most common organisms detected (6.4% [1059/16 570] and 6.1% [1006/16 570], respectively). The third most common organism varied based on high-risk comorbidity, typically Salmonella or Campylobacter. High-risk patients had significantly lower odds of detecting any pathogen compared with low-risk patients (19% [1996/10 752] vs. 27% [1595/5818]) (OR 0.60; 95% CI, 0.56-0.65). Patients with HIV had higher bacterial (adjusted OR 1.61; 95% CI, 1.05-2.38) and parasitic detection (2.94; 95% CI, 1.11-6.46), while transplant recipients had higher viral detection (adjusted OR 1.50; 95% CI, 1.08-2.07). Codetections most commonly involved EPEC with other organisms.
Discussion:
Most GIP testing in high-risk patients did not identify a causative pathogen. When the GIP did detect an organism, EPEC and norovirus were the most common, with distinct pathogen profiles by comorbidity. Our findings support risk-stratified testing and highlight GIP limitations, including potential false positives.
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