Published November 13, 2020 | Version v1
Journal article

Visualisation of H2O2 penetration through skin indicates importance to develop pathway-specific epidermal sensing

  • 1. Malmö University. Biofilms - Research Center for Biointerfaces (Sweden)
  • 2. Malmö University. Department of Biomedical Science, Faculty of Health and Society (Sweden)
  • 3. Clermont Auvergne University. Department of Biological Engineering (France)
  • 4. University of Montpellier. Faculty of Sciences (France)
  • 5. Medicon Village. ImaGene-iT (Sweden)
  • 6. Lund University. Clinical Protein Science & Imaging, Biomedical Centre, Department of Biomedical Engineering (Sweden)

Description

Elevated amounts of reactive oxygen species (ROS) including hydrogen peroxide (H2O2) are observed in the epidermis in different skin disorders. Thus, epidermal sensing of H2O2 should be useful to monitor the progression of skin pathologies. We have evaluated epidermal sensing of H2O2 in vitro, by visualising H2O2 permeation through the skin. Skin membranes were mounted in Franz cells, and a suspension of Prussian white microparticles was deposited on the stratum corneum face of the skin. Upon H2O2 permeation, Prussian white was oxidised to Prussian blue, resulting in a pattern of blue dots. Comparison of skin surface images with the dot patterns revealed that about 74% of the blue dots were associated with hair shafts. The degree of the Prussian white to Prussian blue conversion strongly correlated with the reciprocal resistance of the skin membranes. Together, the results demonstrate that hair follicles are the major pathways of H2O2 transdermal penetration. The study recommends that the development of H2O2 monitoring on skin should aim for pathway-specific epidermal sensing, allowing micrometre resolution to detect and quantify this ROS biomarker at hair follicles.Graphical abstract

Additional details

Identifiers

Publishing Information

Journal Title
Mikrochimica Acta
Journal Volume
187
Journal Issue
12
Journal Page Range
vp.
ISSN
0026-3672
CODEN
MIACAQ

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Copyright
Copyright (c) 2020 © The Author(s) 2020