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Duration of Postdiarrheal Enteric Pathogen Carriage in Young Children in Low-resource Settings
Timothy L McMurry1, Elizabeth T Rogawski McQuade1,2, Jie Liu2
1Department of Public Health Sciences, University of Virginia, Charlottesville, Virginia, USA.
Insights
Prolonged pathogen shedding after diarrhea varies greatly by organism, with Cryptosporidium and Shigella persisting for over a month. Understanding shedding duration is key to controlling infectious diarrhea transmission.
Area of Science:
- * Infectious Diseases
- * Pediatric Gastroenterology
- * Epidemiology
Background:
- * Enteropathogen shedding post-diarrhea complicates diagnosis and drives transmission.
- * A standardized method for estimating pathogen shedding duration is lacking.
Purpose of the Study:
- * To estimate the duration of enteropathogen shedding after diarrhea.
- * To assess changes in subclinical pathogen carriage post-diarrhea.
Main Methods:
- * Analysis of a multisite birth cohort (0-24 months).
- * Quantitative polymerase chain reaction (qPCR) testing of diarrheal and monthly non-diarrheal stools for 29 enteropathogens.
- * Log-normal accelerated failure time survival modeling to estimate pathogen carriage duration and prevalence differences.
Main Results:
- * Median postdiarrheal shedding duration varied significantly by pathogen (e.g., Rotavirus: 8.1 days, Cryptosporidium: 39.5 days).
- * Cryptosporidium and Shigella showed the most substantial increases in subclinical carriage after diarrhea onset.
- * Analysis included 3247 diarrheal episodes for 9 high-burden pathogens.
Conclusions:
- * Postdiarrheal shedding is highly variable, with prolonged shedding observed for Cryptosporidium and Shigella.
- * Targeted interventions like antimicrobial therapy and vaccination for these pathogens could significantly reduce transmission.
Background:
Prolonged enteropathogen shedding after diarrhea complicates the identification of etiology in subsequent episodes and is an important driver of pathogen transmission. A standardized approach has not been applied to estimate the duration of shedding for a wide range of pathogens.
Methods:
We used a multisite birth cohort of children 0-24 months of age from whom diarrheal and monthly nondiarrheal stools were previously tested by quantitative polymerase chain reaction for 29 enteropathogens. We modeled the probability of detection of the etiologic pathogen before and after diarrhea using a log-normal accelerated failure time survival model and estimated the median duration of pathogen carriage as well as differences in subclinical pathogen carriage 60 days after diarrhea onset in comparison to a prediarrhea baseline.
Results:
We analyzed 3247 etiologic episodes of diarrhea for the 9 pathogens with the highest attributable burdens of diarrhea. The median duration of postdiarrheal carriage varied widely by pathogen, from about 1 week for rotavirus (median, 8.1 days [95% confidence interval {CI}, 6.2-9.6]) to >1 month for Cryptosporidium (39.5 days [95% CI, 30.6-49.0]). The largest increases in subclinical pathogen carriage before and after diarrhea were seen for Cryptosporidium (prevalence difference between 30 days prior and 60 days after diarrhea onset, 0.30 [95% CI, .23-.39]) and Shigella (prevalence difference, 0.21 [95% CI, .16-.27]).
Conclusions:
Postdiarrheal shedding was widely variable between pathogens, with strikingly prolonged shedding seen for Cryptosporidium and Shigella. Targeted antimicrobial therapy and vaccination for these pathogens may have a relatively large impact on transmission.
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