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Clinical Outcomes Following Personalized Gut Microbiota-Targeted Therapy in Children with Atopic Dermatitis and
Raluca-Gabriela Miulescu1,2, Ioana Roşca1,3, Ruxandra-Cristina Marin1
1Faculty of Medicine, University of Medicine and Pharmacy "Carol Davila", 020021 Bucharest, Romania.
Insights
Individualized microbiota-targeted therapy significantly improved pediatric atopic dermatitis (AD) severity over 90 days. Gut dysbiosis markers indicated baseline severity but did not predict treatment outcomes in this pilot study.
Area of Science:
- Microbiome research
- Pediatric dermatology
- Gut-skin axis
Background:
- Atopic dermatitis (AD) is a chronic inflammatory skin condition linked to gut-skin axis dysregulation.
- Gut dysbiosis is increasingly implicated in the pathophysiology of pediatric AD.
Purpose of the Study:
- To evaluate the clinical evolution of pediatric AD after individualized, stool-guided microbiota-targeted therapy.
- To determine if baseline gut dysbiosis markers predict treatment outcomes in pediatric AD beyond initial disease severity.
Main Methods:
- A prospective, single-arm pilot study involving 21 children with AD and confirmed gut dysbiosis.
- Gut microbiota analysis via culture-based stool testing (Flora Index, High Putrefaction Flora).
- Individualized treatment with probiotics, prebiotics, and antifungals; disease severity assessed by POEM and SCORAD at baseline and 90 days.
Main Results:
- Significant reductions in POEM (14.67 to 7.10) and SCORAD (41.66 to 17.93) scores (p < 0.001) over 90 days.
- Clinical improvement observed in approximately 71-76% of participants (≥50% reduction in POEM/SCORAD).
- Baseline disease severity, not dysbiosis markers, predicted 90-day outcomes.
Conclusions:
- Individualized microbiota-targeted therapy demonstrated substantial clinical improvement in pediatric AD over 90 days.
- Gut dysbiosis markers correlated with disease burden but lacked independent prognostic value.
- Further randomized controlled trials are necessary to confirm treatment efficacy.
Background/Objectives:
Atopic dermatitis (AD) is a chronic inflammatory skin disease in which gut-skin axis dysregulation is increasingly implicated. We conducted a prospective pilot study to describe the clinical evolution of pediatric AD following individualized, stool-guided microbiota-targeted therapy and to explore whether baseline dysbiosis markers predict outcomes beyond baseline disease severity.
Methods:
Twenty-one children with AD and laboratory-confirmed gut dysbiosis were enrolled consecutively at a tertiary pediatric center in Romania in a single-arm prospective pilot study. Gut microbiota was assessed using targeted culture-based stool analysis, generating a Flora Index and a binary High Putrefaction Flora classification. Individualized treatment consisted of strain-specific probiotics, prebiotics, and antifungals when indicated. Disease severity was assessed using the Patient-Oriented Eczema Measure (POEM) and Scoring Atopic Dermatitis (SCORAD) at baseline, 30 days, and 90 days. Longitudinal changes were evaluated using repeated-measures ANOVA and hierarchical regression models.
Results:
High Putrefaction Flora was present in 71.4% of participants. Mean POEM decreased from 14.67 ± 5.22 at baseline to 7.10 ± 3.82 at 90 days, while mean SCORAD decreased from 41.66 ± 15.28 to 17.93 ± 11.68 (both p < 0.001). Approximately 76% of participants achieved a ≥50% reduction in POEM, and 71% achieved a ≥50% reduction in SCORAD. Individualized microbiota-targeted therapy was associated with substantial improvements in both clinical and patient-reported disease severity over the 90-day follow-up. Although children with High Putrefaction Flora exhibited higher disease severity scores in unadjusted analyses, baseline disease severity was the only significant predictor of 90-day outcomes. The Flora Index provided no independent explanatory value.
Conclusions:
In this exploratory single-arm pilot study, individualized microbiota-targeted therapy was associated with substantial and clinically meaningful improvement in AD severity over 90 days. Dysbiosis markers were associated with disease burden but did not independently predict outcomes, suggesting that they may function primarily as indicators of baseline severity rather than prognostic biomarkers. Because of the uncontrolled study design, causal inferences regarding treatment effects cannot be made, and these findings should be considered hypothesis-generating. Adequately powered randomized controlled trials are required to determine the efficacy of individualized microbiota-targeted interventions in pediatric atopic dermatitis.
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