Longitudinal Study of the Psoriasis-Associated Skin Microbiome during Therapy with Ustekinumab in a Randomized Phase

Michael A Loesche1, Kamyar Farahi2, Kimberly Capone3

  • 1Departments of Dermatology and Microbiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.

Insights

Plaque psoriasis skin microbiota show variations across body sites and lesion types. Ustekinumab therapy alters microbial communities, increasing site-specificity and heterogeneity in psoriatic lesions.

Area of Science:

  • Dermatology
  • Microbiology
  • Immunology

Background:

  • Plaque psoriasis is a chronic skin disease with complex causes, including immune system issues and genetics.
  • The role of skin microbiota in psoriasis development and treatment response requires further investigation.

Purpose of the Study:

  • To analyze the dynamic changes in skin microbiota on psoriatic lesions and adjacent skin during ustekinumab therapy.
  • To understand the relationship between skin microbiota, disease location, lesion recurrence, and treatment response.

Main Methods:

  • Systematic analysis of bacterial 16S ribosomal RNA gene sequencing from skin swabs of 114 patients.
  • Samples collected from six anatomical sites before and during ustekinumab treatment (Phase 3b trial).

Main Results:

  • Minor, site-specific microbial differences were observed between lesional and nonlesional skin pre-treatment.
  • Microbial communities diverged between lesional and nonlesional skin during therapy, increasing body-site specificity.
  • Psoriatic lesions showed greater microbial heterogeneity than nonlesional skin, with increasing variance during treatment.
  • Microbiota of recurrent lesions differed from initial lesions, indicating variable colonization patterns.

Conclusions:

  • Plaque psoriasis is not linked to specific microbes or overall microbial diversity.
  • Skin microbiota exhibit variations related to disease location, lesion recurrence, and anti-IL-12/23 therapy.
  • This study provides a large dataset offering insights into microbial dynamics in psoriasis.

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