Sociedad Americana de Hirudoterapia

Alteration of the cutaneous microbiome in psoriasis and potential role in Th17 polarization

Microbiome study published in Microbiome (2018)

Última actualización: June 18, 2026Revisado por: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Research reportDesarrollo de fármacosChang HW et al. · Microbiome, 2018

Abstract

BACKGROUND: Psoriasis impacts 1-3% of the world's population and is characterized by hyper-proliferation of keratinocytes and increased inflammation. At the molecular level, psoriasis is commonly driven by a Th17 response, which serves as a major therapeutic target. Microbiome perturbations have been associated with several immune-mediated diseases such as atopic dermatitis, asthma, and multiple sclerosis. Although a few studies have investigated the association between the skin microbiome and psoriasis, conflicting results have been reported plausibly due to the lack of standardized sampling and profiling protocols, or to inherent microbial variability across human subjects and underpowered studies. To better understand the link between the cutaneous microbiota and psoriasis, we conducted an analysis of skin bacterial communities of 28 psoriasis patients and 26 healthy subjects, sampled at six body sites using a standardized protocol and higher sequencing depth compared to previous studies. Mouse studies were employed to examine dermal microbial-immune interactions of bacterial species identified from our study. RESULTS: Skin microbiome profiling based on sequencing the 16S rRNA V1-V3 variable region revealed significant differences between the psoriasis-associated and healthy skin microbiota. Comparing the overall community structures, psoriasis-associated microbiota displayed higher diversity and more heterogeneity compared to healthy skin bacterial communities. Specific microbial signatures were associated with psoriatic lesional, psoriatic non-lesional, and healthy skin. Specifically, relative enrichment of Staphylococcus aureus was strongly associated with both lesional and non-lesional psoriatic skin. In contrast, Staphylococcus epidermidis and Propionibacterium acnes were underrepresented in psoriatic lesions compared to healthy skin, especially on the arm, gluteal fold, and trunk. Employing a mouse model to further study the impact of cutaneous Staphylcoccus species on the skin T cell differentiation, we found that newborn mice colonized with Staphylococcus aureus demonstrated strong Th17 polarization, whereas mice colonized with Staphylococcus epidermidis or un-colonized controls showed no such response. CONCLUSION: Our results suggest that microbial communities on psoriatic skin is substantially different from those on healthy skin. The psoriatic skin microbiome has increased diversity and reduced stability compared to the healthy skin microbiome. The loss of community stability and decrease in immunoregulatory bacteria such as Staphylococcus epidermidis and Propionibacterium acnes may lead to higher colonization with pathogens such as Staphylococcus aureus, which could exacerbate cutaneous inflammation along the Th17 axis.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal ArticleResearch Support, N.I.H., ExtramuralResearch Support, Non-U.S. Gov't
Indexed MeSH termsAdultBacteriaCase-Control StudiesCell PolarityCohort StudiesFemaleHumansMaleMicrobiotaMiddle AgedPsoriasisSkin

Resumen

Skin microbiome profiling in 28 psoriasis patients and 26 healthy subjects across 6 body sites reveals enrichment of Staphylococcus aureus on psoriatic skin and depletion of S. epidermidis and P. acnes; mouse models show S. aureus drives Th17 polarization.

Por qué esto importa para la hirudoterapia

The study profiled skin bacterial communities in psoriasis patients and healthy subjects and used mouse colonization to test effects of Staphylococcus species on Th17 immune polarization. It found that psoriatic skin microbiota had increased diversity and heterogeneity, enrichment of Staphylococcus aureus in lesional and non-lesional skin, and underrepresentation of Staphylococcus epidermidis and Propionibacterium acnes; S. aureus colonization drove Th17 polarization in newborn mice. This work concerns inflammatory skin biology, but there is no defensible leech link: no leeches, leech secretome, or hirudotherapy were involved. Its relevance to ASH is therefore absent or indirect at best, and findings should not be extrapolated to medicinal leech use.

Citación

Alteration of the cutaneous microbiome in psoriasis and potential role in Th17 polarization.

Chang HW et al. · Microbiome, 2018

Contexto clínico relacionado

Añadido a la biblioteca ASH: May 26, 2026 · Última actualización del sitio: June 18, 2026

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