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1.
J Dermatol ; 2024 Feb 27.
Artículo en Inglés | MEDLINE | ID: mdl-38414176

RESUMEN

A 67-year-old man had taken the janus kinase (JAK) inhibitor, tofacitinib, for ulcerative colitis. He was referred to our department for a refractory ulcer on his lower leg. We suspected vasculitis and performed skin biopsy. Histopathological examination showed multinucleated giant cells in the epidermis and fibrinoid degeneration of small vessels in the upper dermis. Varicella zoster virus (VZV) DNA was detected by polymerase chain reaction and we diagnosed the patient with atypical vasculitis-like herpes zoster. The patient was treated with oral valacyclovir, but the rash persisted and took 2 months to heal. Immunostaining using anti-VZV antibody was positive mainly in epidermal keratinocytes, but was also observed to be positive in cells in the dermis. We further performed RNA in situ hybridization using a VZV ORF9 mRNA probe and clearly showed that the distribution of VZV mRNA extended into the dermis, including the dermal vessel walls and the eccrine sweat glands as well as the epidermis. The internal administration of JAK inhibitors may induce regional widespread VZV infection including vessels and involved in the formation of prolonged vasculitis-like manifestation. RNA in situ hybridization can be a potent tool for detecting the spread of VZV infection in the skin.

2.
J Eur Acad Dermatol Venereol ; 37(7): 1415-1425, 2023 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-36971768

RESUMEN

BACKGROUND: Acne vulgaris provides a unique disease setting in which a prominent skin inflammation is coupled with the overproduction of lipid-rich sebum. OBJECTIVES: Our goal was to evaluate the expression of barrier molecules in papular acne skin samples obtained from untreated patients and compare those to the results of healthy and of papulopustular rosacea-involved ones at the mRNA and protein levels. In addition, we aimed to assess the effects of various sebum composing lipids on the expression of proteins involved in barrier formation in keratinocytes. METHODS: Available microarray data sets of papular acne and papulopustular rosacea-affected skin samples were re-analysed with a focus on epidermal barrier-related pathways. Immunohistochemistry was performed to detect barrier molecules in the interfollicular regions of human acne and healthy skin samples. Protein levels of barrier-related genes were measured by western blot in samples of HaCaT keratinocytes treated with selected lipids. RESULTS: Meta-analysis of whole transcriptome data sets revealed that barrier-related pathways are significantly affected in acne vulgaris skin samples. While an altered expression of key molecules in maintaining barrier functions such as filaggrin, keratin 1, involucrin, desmoglein 1, kallikrein 5 and 7, was also observed at the protein levels, our data demonstrated that sebum composing lipids may selectively modify the levels of epidermal barrier-related molecules. CONCLUSIONS: Our results suggest that although not as prominently as in the dry papulopustular rosacea skin, the epidermal barrier in the interfollicular region may be damaged also in the lipid-rich skin samples of papular acne. Furthermore, our findings indicating diverse regulatory effects of various sebum lipids on the expression of barrier molecules in keratinocytes suggest, that they may influence the moisturization of the skin as well. Altogether, our findings could have implications in the development of sebum-modulating anti-acne therapies and even in the care of symptom-free skin.


Asunto(s)
Acné Vulgar , Rosácea , Humanos , Acné Vulgar/metabolismo , Sebo/metabolismo , Queratinocitos , Lípidos
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