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Published on: December 31, 2017
Understanding the Gut Microbiota in Pediatric Patients with Alopecia Areata and their Siblings: A Pilot Study
Sneha Rangu1, Jung-Jin Lee2, Weiming Hu2
1Section of Dermatology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania, USA.
Insights
Pediatric alopecia areata is linked to gut microbiome changes in children. This study found differences in fecal bacteria, suggesting alopecia areata may be a systemic condition affecting internal health.
Area of Science:
- Pediatric dermatology
- Microbiome research
- Immunology
Background:
- Alopecia areata is an autoimmune skin condition causing hair loss.
- The role of the gut microbiome in pediatric alopecia areata is not well understood.
Purpose of the Study:
- To investigate differences in the fecal microbiome between children with alopecia areata and their healthy siblings.
Main Methods:
- Cross-sectional study of 41 children with alopecia areata and 41 siblings.
- Fecal microbiome analysis using shotgun metagenomic sequencing.
- Comparison of microbial diversity and gene ortholog abundance.
Main Results:
- A statistically significant difference in gut microbiome composition (Jaccard distance) was observed.
- The abundance of *Ruminococcus bicirculans* was decreased in children with alopecia areata.
- Differences in spore germination and metal transportation genes were identified between groups.
Conclusions:
- Pediatric alopecia areata is associated with distinct alterations in the gut microbiome.
- These findings suggest alopecia areata may be a systemic disease with internal manifestations beyond hair loss.
Abstract:
A cross-sectional study of 41 children aged 4-17 years with alopecia areata and 41 of their siblings without alopecia areata was conducted. A total of 51% had the Severity of Alopecia Tool scores in the range of 0-25%, 12% had scores between 26% and 49%, and 36% had scores between 75% and 100%. The fecal microbiome was characterized using shotgun metagenomic sequencing. A comparison of alpha and beta diversity yielded a small but statistically significant difference on the basis of Jaccard distance, which measures species presence and absence between samples. However, a follow-up analysis did not reveal the particular species that were present more often in one group. The relative abundance of one species, Ruminococcus bicirculans, was decreased in patients with alopecia areata relative to that in their sibling controls. An analysis of gene ortholog abundance identified 20 orthologs that were different between groups, including spore germination genes and genes for metal transportation. The associations reported in this study support a view of pediatric alopecia areata as a systemic disease that has effects on hair but also leads to internal changes, including differences in the gut microbiome.
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