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Updated: Aug 25, 2026

The Goeckerman Regimen for the Treatment of Moderate to Severe Psoriasis
Published on: July 11, 2013
Assessing microbial manipulation and environmental pollutants in the pathogenesis of psoriasis
Portia Gough1, Jordan Zeldin1, Ian A Myles1
1Epithelial Therapeutics Unit, National Institute of Allergy and Infectious Disease, National Institutes of Health, Bethesda, MD, United States.
Abstract:
The cutaneous microbiome is increasingly recognized as a contributor to skin diseases like atopic dermatitis (AD) and psoriasis. Although traditionally AD and psoriasis have been viewed as having opposing immunologic findings, recent evidence suggests an overlap in ceramide-family lipid production in the protection against symptoms. We recently identified that specific environmental pollutants may drive dysbiosis through direct suppression of ceramide-family lipids produced by health-associated skin bacteria in atopic dermatitis (AD). We further demonstrated that one such bacteria, Roseomonas mucosa, generated significant clinical improvement in AD lasting beyond active treatment via lipid-mediated modulation of tumor necrosis factor (TNF) signaling. To assess the potential preclinical benefit of R. mucosa in psoriasis we assessed for direct effects on surface TNF signaling in cell cultures and identified direct effects on the TNF axis. We also identified preclinical efficacy of R. mucosa treatment in the imiquimod mouse model of psoriasis. Finally, we expanded our previous environmental assessment for psoriasis to include more traditional markers of air quality and found a strong association between disease rates and ambient carbon monoxide (CO), nitrogen dioxide (NO2), and particulate matter (PM). At the current stage this work is speculative but does support consideration of further preclinical models and/or clinical assessments to evaluate any potential for therapeutic benefit through microbial manipulation and/or environmental mitigation.
Insights
Roseomonas mucosa may treat skin conditions like atopic dermatitis and psoriasis by modulating the skin microbiome and tumor necrosis factor (TNF) signaling. Environmental pollutants like CO, NO2, and PM are linked to increased disease rates.
Area of Science:
- Dermatology
- Microbiology
- Immunology
Background:
- The skin microbiome influences skin diseases such as atopic dermatitis (AD) and psoriasis.
- While AD and psoriasis were thought to have opposing immunologic profiles, ceramide lipids may offer protection in both.
- Environmental pollutants can disrupt the skin microbiome and ceramide production, potentially worsening AD.
Purpose of the Study:
- To investigate the therapeutic potential of Roseomonas mucosa in psoriasis.
- To explore the link between environmental pollutants and psoriasis prevalence.
- To assess R. mucosa's effects on tumor necrosis factor (TNF) signaling.
Main Methods:
- Assessed R. mucosa's direct effects on TNF signaling in cell cultures.
- Evaluated R. mucosa's efficacy in an imiquimod-induced mouse model of psoriasis.
- Analyzed the association between air quality markers (CO, NO2, PM) and psoriasis rates.
Main Results:
- R. mucosa demonstrated direct effects on the TNF axis and preclinical efficacy in a mouse model of psoriasis.
- Increased rates of psoriasis correlated with higher levels of ambient carbon monoxide (CO), nitrogen dioxide (NO2), and particulate matter (PM).
- R. mucosa previously showed clinical improvement in AD via lipid-mediated TNF modulation.
Conclusions:
- Roseomonas mucosa shows potential for psoriasis treatment through TNF modulation.
- Environmental factors like air pollution are associated with psoriasis prevalence.
- Further preclinical and clinical studies are warranted to explore microbial therapies and environmental mitigation for skin diseases.
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