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Updated: Nov 27, 2025

Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
Differences in Gut Microbiome in Hospitalized Immunocompetent vs. Immunocompromised Children, Including Those With
Sindhu Mohandas1,2,3, Vijaya L Soma1,2, Thi Dong Binh Tran4
1Division of Pediatric Infectious Diseases, The Children's Hospital at Montefiore, Bronx, NY, United States.
Insights
Hospitalized children, including those with cancer or sickle cell disease (SCD), did not show decreased gut microbial diversity. However, antibiotics and proton pump inhibitors were linked to lower diversity in immunocompromised (IC) children.
Area of Science:
- Microbiology
- Pediatric Health
- Gut Microbiome Research
Background:
- Gut microbial diversity and composition are crucial for maintaining health.
- Hospitalized children, particularly those who are immunocompromised (IC), may experience alterations in their gut microbiome.
- This study investigated differences in gut microbial diversity and composition between IC and non-immunocompromised (Non-IC) pediatric patients.
Purpose of the Study:
- To test the hypothesis that hospitalized immunocompromised (IC) children have decreased gut microbial diversity and increased Clostridioides difficile colonization compared to Non-IC children.
- To identify factors associated with gut microbial diversity in hospitalized children.
- To compare the gut microbiome composition between IC and Non-IC pediatric patients.
Main Methods:
- A cross-sectional study involving 69 IC and 37 Non-IC pediatric patients admitted to a single unit.
- Stool samples were collected within 72 hours of admission for 16S rRNA sequencing to assess the microbiome.
- Clostridioides difficile colonization was evaluated using antigen and toxin PCR assays.
Main Results:
- No significant differences in overall microbial alpha diversity or C. difficile colonization were found between IC and Non-IC groups.
- Lower alpha diversity was independently associated with the use of proton pump inhibitors or antibiotics, including prophylactic penicillin in sickle cell disease (SCD) patients.
- Non-IC patients exhibited a higher abundance of beneficial commensal bacteria, such as Alistipes and Roseburia species.
Conclusions:
- Antibiotics and proton pump inhibitors, more prevalent in IC children, are identified as risk factors for reduced gut microbial diversity.
- Non-IC children demonstrated a greater abundance of health-associated bacterial species in their gut microbiome.
- Further longitudinal studies are warranted to elucidate the clinical implications of these observed gut microbiome differences.
Abstract:
Background: Gut microbial diversity and composition play important roles in health. This cross-sectional study was designed to test the hypothesis that hospitalized children who may be relatively immunocompromised (IC), defined as those with cancer, sickle cell disease (SCD), transplantation, or receiving immunosuppressive therapy) would have decreased microbial diversity, increased Clostridioides difficile colonization and different species composition compared to non-immunocompromised (Non-IC) children admitted to the same pediatric unit. Methods: A stool sample was obtained within 72 h of admission to a single unit at The Children's Hospital at Montefiore, Bronx, NY from March 2016 to February 2017 and the microbiome assessed by 16S rRNA sequencing. C. difficile colonization was assessed by glutamate dehydrogenase antigen and toxin polymerase chain reaction assays. Results: Stool samples were obtained from 69 IC (32 SCD, 19 cancer, 9 transplantation and 9 other) and 37 Non-IC patients. There were no significant differences in microbial alpha diversity and C. difficile colonization comparing IC vs. non-IC patients. Lower alpha diversity, however, was independently associated with the use of proton pump inhibitors or antibiotics, including prophylactic penicillin in patients with SCD. Differences in specific species abundances were observed when comparing IC vs. non-IC patients, particularly children with SCD. Non-IC patients had increased abundance of commensals associated with health including Alistipes putredinis, Alistipes ihumii, Roseburia inulinivorans, Roseburia intestinalis, and Ruminococcus albus (p < 0.005). Conclusions: Antibiotics and proton pump inhibitors, which were more commonly used in IC children, were identified as risk factors for lower microbial diversity. Non-IC patients had higher abundance of several bacterial species associated with health. Longitudinal studies are needed to determine the clinical significance of these differences in gut microbiome.
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