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Updated: Jan 11, 2026

Lymphocyte Isolation from Human Skin for Phenotypic Analysis and Ex Vivo Cell Culture
Published on: April 8, 2016
Cutibacteriumacnes induces skin region-specific innate immune memory alterations in human keratinocytes
Fanni Balogh1, Anett Magyari2, Lilla Erdei3
1HCEMM-USZ Skin Research Group, Szeged, Hungary; HUN-REN-SZTE Dermatological Research Group, Szeged, Hungary; Department of Dermatology and Allergology, University of Szeged, Szeged, Hungary.
Abstract:
External insults can cause immune activation in immune cells, resulting in persistent molecular changes that can lead to innate immune memory changes in these cells. This study investigated the potential for cellular reprogramming in response to Cutibacterium acnes in keratinocytes. We exposed normal human epidermal keratinocytes (NHEKs) obtained by mammoplasty (denoted as NHEK-B) or abdominoplasty (denoted as NHEK-A) to C acnes, followed by stimulation with Pam3CSK4 to assess immune activation and cellular responses. In NHEK-B cells, C acnes and Pam3CSK4 treatment induced trained immunity-type responses, higher expression of selected immune target genes, and a diminished response compared with trained and Pam3CSK4-induced NHEK-A cells. Total transcriptome analysis delineated regional differences, with the activation of immune-related pathways in NHEK-B cells and alterations in keratinocyte differentiation processes in NHEK-A cells. We detected differences in metabolic regulation, and utilizing pharmacological inhibitors, we demonstrated the necessity of the optimal regulation of histone acetylation and DNA methylation for the changes mentioned earlier. This study demonstrated that C acnes triggers innate immune memory processes in keratinocytes, characterized by signaling, epigenetic, and metabolic reprogramming that influences cellular responses to subsequent stimuli. The observation that analogous insults might elicit skin region-specific responses offers insights into the etiology and mechanisms underlying common inflammatory skin diseases.
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