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Author Spotlight: Advancements in Understanding and Combatting Shigella Infections
Published on: February 9, 2024
Failure of Syndrome-Based Diarrhea Management Guidelines to Detect Shigella Infections in Kenyan Children
P B Pavlinac1,2, D M Denno3,2,4, G C John-Stewart1,3,2,5
1Department of Epidemiology.
Insights
Current methods for diagnosing Shigella diarrhea in children are insufficient, missing most infections. New diagnostic tools or algorithms are urgently needed to ensure children receive appropriate antibiotic treatment for Shigella.
Area of Science:
- Pediatrics
- Infectious Diseases
- Microbiology
Background:
- Shigella is a major cause of childhood diarrhea mortality in sub-Saharan Africa.
- Current guidelines use dysentery as a proxy for Shigella infection, recommending antibiotics only in its presence.
Purpose of the Study:
- To evaluate the accuracy of syndromic diagnosis for Shigella-associated diarrhea in children.
- To identify clinical factors that could improve Shigella diagnosis.
Main Methods:
- Children aged 6 months to 5 years with acute diarrhea were enrolled in Western Kenya.
- Stool samples were analyzed using bacterial culture and multiplex PCR.
- Multivariable logistic regression identified factors for improved syndromic diagnosis.
Main Results:
- Shigella was detected in 4.6% of 1360 children.
- Dysentery had low sensitivity (11.1%) but high specificity (94.0%) for Shigella.
- A combination of fecal mucous, age >23 months, and less vomiting improved sensitivity (39.7%) but lowered specificity (82.7%).
Conclusions:
- Dysentery is an unreliable indicator for Shigella, leading to missed diagnoses and undertreatment.
- There is a critical need for rapid diagnostics or improved clinical algorithms to guide antibiotic use in Shigella-infected children.
Background:
Shigella is a leading cause of childhood diarrhea mortality in sub-Saharan Africa. Current World Health Organization guidelines recommend antibiotics for children in non cholera-endemic areas only in the presence of dysentery, a proxy for suspected Shigella infection.
Methods:
To assess the sensitivity and specificity of the syndromic diagnosis of Shigella-associated diarrhea, we enrolled children aged 6 months to 5 years presenting to 1 of 3 Western Kenya hospitals between November 2011 and July 2014 with acute diarrhea. Stool samples were tested using standard methods for bacterial culture and multiplex polymerase chain reaction for pathogenic Escherichia coli. Stepwise multivariable logit models identified factors to increase the sensitivity of syndromic diagnosis.
Results:
Among 1360 enrolled children, median age was 21 months (interquartile range, 11-37), 3.4% were infected with human immunodeficiency virus, and 16.5% were stunted (height-for-age z-score less than -2). Shigella was identified in 63 children (4.6%), with the most common species being Shigella sonnei (53.8%) and Shigella flexneri (40.4%). Dysentery correctly classified 7 of 63 Shigella cases (sensitivity, 11.1%). Seventy-eight of 1297 children without Shigella had dysentery (specificity, 94.0%). The combination of fecal mucous, age over 23 months, and absence of excessive vomiting identified more children with Shigella-infection (sensitivity, 39.7%) but also indicated antibiotics in more children without microbiologically confirmed Shigella (specificity, 82.7%).
Conclusions:
Reliance on dysentery as a proxy for Shigella results in the majority of Shigella-infected children not being identified for antibiotics. Field-ready rapid diagnostics or updated evidence-based algorithms are urgently needed to identify children with diarrhea most likely to benefit from antibiotic therapy.
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