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Actinic keratosis and surrounding skin exhibit changes in corneocyte surface topography and decreased levels of filaggrin degradation products (CROSBI ID 278922)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Keurentjes, Anne J. ; Witt, Kornelis D. ; Jakasa, Ivone ; Rüther, Lars ; Kemperman, Patrick M. J. H. ; Kezic, Sanja ; Riethmüller, Christoph Actinic keratosis and surrounding skin exhibit changes in corneocyte surface topography and decreased levels of filaggrin degradation products // Experimental dermatology, 29 (2020), 5; 462-466. doi: 10.1111/exd.14089

Podaci o odgovornosti

Keurentjes, Anne J. ; Witt, Kornelis D. ; Jakasa, Ivone ; Rüther, Lars ; Kemperman, Patrick M. J. H. ; Kezic, Sanja ; Riethmüller, Christoph

engleski

Actinic keratosis and surrounding skin exhibit changes in corneocyte surface topography and decreased levels of filaggrin degradation products

Actinic keratosis (AK) is a frequent premalignant skin lesion mainly caused by chronic sun exposure. AK lesions are often surrounded by invisible, subclinical alterations, called field of cancerization (FoC). Definition of FoC is of importance for therapy management ; however, the criteria and non‐invasive tools to characterize FoC are lacking. Atomic force microscopy (AFM) proved to be a suitable tool for detection of changes in the corneocyte surface topography in inflammatory skin diseases, which share similar clinical features with AK such as hyper‐ and parakeratosis. Therefore, in this study we applied AFM to investigate AK and surrounding skin obtained by non‐invasive collection of the stratum corneum (SC) with adhesive tapes. Furthermore, we determined degradation products of structural protein filaggrin (natural moisturizing factor, NMF), which previously showed association with the changes in corneocyte surface topography. Ten patients with multiple AK on the face were recruited from the outpatient clinic. SC samples were collected from the AK lesion, skin sites adjacent to the AK, 5 cm from the AK and retroauricular area. Corneocyte surface topography was determined by AFM, and NMF by liquid chromatography. The AK lesion showed alterations of the corneocyte surface topography characterized by an increased number of nanosize protrusions, which gradually decreased with the distance from the lesion. NMF levels show an inverse pattern. Atomic force microscopy showed to be a suitable tool to detect changes in the corneocyte surface topography on the AK lesion and surrounding skin in a non‐invasive manner.

actinic keratosis, atomic force microscopy, filaggrin, stratum corneum

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

29 (5)

2020.

462-466

objavljeno

0906-6705

10.1111/exd.14089

Povezanost rada

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Kemija, Kliničke medicinske znanosti

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