Interleukin (IL)-1 family comprise 11 members that play an important role in immune regulation and inflammatory process. Retinoids exert complex effects on the immune system, having anti-inflammatory effects in chronic dermatological diseases. Vitamin D (vitD) and analogs have been shown to suppress TNF-??-induced IL-1?? in human keratinocytes (KCs). In the present study, we investigated IL-1 family members in psoriasis and the effects of vitD and retinoic acid (RA) on these members. We analyzed IL-1 family members gene expression in psoriatic skin and in ex vivo skin organ culture exposed to TNF-??, IL-17 or broadband UVB; afterwards, treatment with vitD or RA was performed and IL-1 family members mRNA was evaluated. Similarly, KCs were stimulated with IL-17 and subsequently treated with vitD. IL-1 family members were enhanced in psoriatic skin and in ex vivo skin organ cultures after pro-inflammatory stimuli (TNF-??, IL-17 and UVB). RA and vitD were able to suppress this enhancement. © 2013 Springer-Verlag Berlin Heidelberg.
Interleukin-1 family members are enhanced in psoriasis and suppressed by vitamin D and retinoic acid / Balato, Anna; Schiattarella, Maria; Lembo, Serena; Mattii, Martina; Prevete, Nella; Balato, Nicola; Ayala, Fabio. - In: ARCHIVES OF DERMATOLOGICAL RESEARCH. - ISSN 0340-3696. - 305:(2013), pp. 255-262. [10.1007/s00403-013-1327-8]
Interleukin-1 family members are enhanced in psoriasis and suppressed by vitamin D and retinoic acid.
BALATO, ANNA;SCHIATTARELLA, MARIA;LEMBO, SERENA;MATTII, MARTINA;PREVETE, Nella;BALATO, NICOLA;AYALA, FABIO
2013
Abstract
Interleukin (IL)-1 family comprise 11 members that play an important role in immune regulation and inflammatory process. Retinoids exert complex effects on the immune system, having anti-inflammatory effects in chronic dermatological diseases. Vitamin D (vitD) and analogs have been shown to suppress TNF-??-induced IL-1?? in human keratinocytes (KCs). In the present study, we investigated IL-1 family members in psoriasis and the effects of vitD and retinoic acid (RA) on these members. We analyzed IL-1 family members gene expression in psoriatic skin and in ex vivo skin organ culture exposed to TNF-??, IL-17 or broadband UVB; afterwards, treatment with vitD or RA was performed and IL-1 family members mRNA was evaluated. Similarly, KCs were stimulated with IL-17 and subsequently treated with vitD. IL-1 family members were enhanced in psoriatic skin and in ex vivo skin organ cultures after pro-inflammatory stimuli (TNF-??, IL-17 and UVB). RA and vitD were able to suppress this enhancement. © 2013 Springer-Verlag Berlin Heidelberg.File | Dimensione | Formato | |
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