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Published on: August 22, 2012
Stool biomarkers as measures of enteric pathogen infection in infants from Addis Ababa informal settlements
Leon M Espira1, Gwenyth O Lee1,2, Kaleab Baye3
1Department of Epidemiology, University of Michigan School of Public Health, Ann Arbor, Michigan, United States of America.
Insights
New fecal mRNA biomarkers reveal how gut infections impact child growth. This expanded panel offers insights into immune and non-immune processes linked to environmental enteric dysfunction (EED).
Area of Science:
- Pediatric Gastroenterology
- Infectious Diseases
- Biomarker Discovery
Background:
- Frequent enteric infections in children are linked to growth faltering, but underlying mechanisms are unclear.
- Existing protein fecal biomarkers offer limited insight into non-immune processes like gut integrity, crucial for understanding chronic conditions like environmental enteric dysfunction (EED).
Purpose of the Study:
- To investigate how an expanded panel of fecal biomarkers, including novel mRNA transcripts, can better elucidate the physiological pathways affected by enteric pathogen exposure.
- To assess the utility of these expanded biomarkers in understanding immune and non-immune responses to specific gut pathogens.
Main Methods:
- Stool samples from infants in Addis Ababa, Ethiopia, were analyzed using a panel of 3 protein and 4 novel fecal mRNA biomarkers.
- Two scoring systems (theory-based and data reduction) were employed to categorize biomarkers and assign physiological attributes.
- Linear models examined associations between biomarker scores and pathogen gene counts to identify pathogen-specific effects.
Main Results:
- Inflammation scores correlated positively with Shigella and enteropathogenic E. coli (EPEC) infections.
- Gut integrity scores showed negative associations with Shigella, EPEC, and shigatoxigenic E. coli (STEC) infections.
- The expanded biomarker panel effectively captured distinct pathogen exposure processes and their physiological consequences.
Conclusions:
- An expanded panel of fecal biomarkers, incorporating mRNA transcripts, provides a more comprehensive understanding of enteric pathogen impacts on gut physiology and immune responses.
- These novel biomarkers complement traditional protein markers by offering cell-specific insights into consequences leading to chronic conditions like EED.
- The findings support the potential of this expanded panel as a tool for measuring systemic outcomes of enteric infections.
Abstract:
Frequent enteric infections in children may be an important cause of growth faltering; however, we do not fully understand the mechanisms by which pathogen infections and the physiological responses to these infections result in poorer growth. Commonly used protein fecal biomarkers (anti-alpha trypsin, neopterin, and myeloperoxidase) provide broad immunological information on an inflammatory response; however, they do not provide information on non-immune processes (e.g., gut integrity) that may be important indicators of chronic end states such as environmental enteric dysfunction (EED). To explore how additional biomarkers will better inform which physiological pathways (both immune and non-immune) are impacted by pathogen exposure we added to the traditional panel of 3 protein fecal biomarkers 4 novel fecal mRNA transcript biomarkers (sucrase isomaltase, caudal homeobox 1, S100A8, and mucin 12) and analyzed stool samples from infants living in informal settlements in Addis Ababa, Ethiopia. To test how this expanded biomarker panel captures distinct pathogen exposure processes we used two different scoring systems. First, we used a theory-based approach to assign each biomarker to specific physiological attributes based on prior understanding of each biomarker. Second, we used data reduction methods to categorize biomarkers and then assign physiological attributes to those categories. We used linear models to examine the association between the derived biomarker scores (based on mRNA and protein levels) and stool pathogen gene counts to determine pathogen specific effects on gut physiology and immune responses. Inflammation scores were positively associated with Shigella and enteropathogenic E.Coli (EPEC) infection, while gut integrity scores were negatively associated with Shigella, EPEC and, shigatoxigenic E.coli (STEC) infection. Our expanded panel of biomarkers hold promise as tools to measure systemic outcomes of enteric pathogen infection. mRNA biomarkers complement established protein biomarkers by providing important cell-specific physiological and immunological consequences of pathogen carriage that can lead to chronic end states such as EED.
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