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Regulation of antimicrobial peptide expression in human gingival keratinocytes by interleukin-1?.


ABSTRACT: In the oral cavity, mucosal keratinocytes resist bacterial infection, in part, by producing broad-spectrum antimicrobial peptides (AMPs) including defensin, adrenomedullin and calprotectin. Epidermal keratinocyte expression of many AMPs increases in response to interleukin-1? (IL-1?). IL-1? is produced by epidermal keratinocytes and regulates cell differentiation. To better understand innate immunity in the oral cavity, we sought to determine how IL-1? might regulate expression of AMPs by human gingival keratinocytes (HGKs) using DNA microarray and Western blot analyses. HGKs from three subjects expressed eleven AMPs, including S100A7, S100A8, S100A9, S100A12, secretory leucocyte protease inhibitor, lipocalin 2 (LCN2), cystatin C and ?-defensin 2. Of the expressed AMPs, S100A7, S100A12 and LCN2 were up-regulated by IL-1? (inducible AMPs); the other AMPs were considered to be constitutive. Human gingival keratinocytes, therefore, express constitutive and IL-1?-inducible AMPs to provide a rapid and robust innate response to microbial infection.

SUBMITTER: Hiroshima Y 

PROVIDER: S-EPMC3412402 | biostudies-literature | 2011 Aug

REPOSITORIES: biostudies-literature

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Regulation of antimicrobial peptide expression in human gingival keratinocytes by interleukin-1α.

Hiroshima Yuka Y   Bando Mika M   Kataoka Masatoshi M   Inagaki Yuji Y   Herzberg Mark C MC   Ross Karen F KF   Hosoi Kazuo K   Nagata Toshihiko T   Kido Jun-Ichi J  

Archives of oral biology 20110211 8


In the oral cavity, mucosal keratinocytes resist bacterial infection, in part, by producing broad-spectrum antimicrobial peptides (AMPs) including defensin, adrenomedullin and calprotectin. Epidermal keratinocyte expression of many AMPs increases in response to interleukin-1α (IL-1α). IL-1α is produced by epidermal keratinocytes and regulates cell differentiation. To better understand innate immunity in the oral cavity, we sought to determine how IL-1α might regulate expression of AMPs by human  ...[more]

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