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March 28, 2026Cells3 citationsOpen Access

Gut Dysbiosis and the Molecular Landscape of the Gut–Skin Axis: Comparative Insights and Therapeutic Implications for Atopic Dermatitis and Psoriasis

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KAKlara AndrzejczakEKEmilia KucharczykASAgata Sternak

Key Points

  • This research examines the link between gut dysbiosis and chronic inflammatory skin diseases like atopic dermatitis and psoriasis.
  • Explores the gut–skin axis and its role in inflammatory skin diseases
  • Analyzes microbiome composition and its impact on immune responses
  • Investigates microbiota-derived metabolites and their effects on inflammation
  • Evaluates potential microbiota-targeted therapeutic interventions
  • Identified dysregulated immune responses associated with gut dysbiosis in atopic dermatitis and psoriasis
  • Demonstrated the impact of microbiota-derived metabolites on immune homeostasis and skin barrier function
  • Highlighted the need for interdisciplinary approaches to optimize treatment strategies

Abstract

Chronic inflammatory skin diseases, including atopic dermatitis (AD) and psoriasis, are systemic immune-mediated disorders driven by dysregulated immune responses. The gut–skin axis is a bidirectional network linking intestinal microorganisms, their metabolites, and host immunity. It connects microbiome composition and function with systemic inflammation and cutaneous pathology, shaping disease-specific mechanisms such as Th2/IL-4/IL-13-mediated barrier dysfunction in AD and Th17/IL-23/IL-17-driven hyperproliferation in psoriasis. Microbiota-derived metabolites, including short-chain fatty acids, tryptophan-derived aryl hydrocarbon receptor ligands, and bile acid-dependent FXR/TGR5 signaling, modulate immune homeostasis and epithelial integrity. Gut dysbiosis, impaired metabolite production, and barrier dysfunction disrupt regulatory networks, amplifying inflammation. Microbiota-targeted interventions, including probiotics, synbiotics, postbiotics, and precision nutrition, may serve as adjunctive therapies, although further well-controlled clinical studies are needed. Integrating multi-omics, metabolomics, and functional microbial profiling, alongside investigations of the gut mycobiome and virome, will be critical to identify predictive biomarkers and optimize therapeutic strategies. These concepts remain mechanistically compelling but largely theoretical, requiring validation in longitudinal and interventional studies.

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Cite This Study

Andrzejczak et al. (2026) studied this question.

synapsesocial.com/papers/69c771dd8bbfbc51511e1f27https://doi.org/10.3390/cells15070594
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