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Updated: Jun 26, 2026

Lymphocyte Isolation from Human Skin for Phenotypic Analysis and Ex Vivo Cell Culture
Published on: April 8, 2016
Interleukin-1 receptor antagonist in normal and psoriatic epidermis
C Hammerberg1, W P Arend, G J Fisher
1Department of Dermatology, University of Michigan Medical School, Ann Arbor 48109-0530.
Insights
Interleukin-1 receptor antagonist (IL-1ra) inhibits IL-1 activity in normal and psoriatic skin. The ratio of IL-1ra to IL-1 alpha is higher in psoriatic skin, suggesting a role in keratinocyte regulation.
Area of Science:
- Dermatology
- Immunology
- Cell Biology
Background:
- Interleukin-1 (IL-1) plays a role in skin inflammation and keratinocyte proliferation.
- IL-1 receptor antagonist (IL-1ra) is a natural inhibitor of IL-1.
- The role of IL-1ra in normal and psoriatic epidermis requires further characterization.
Purpose of the Study:
- To characterize IL-1 inhibitory activity in normal and psoriatic epidermis.
- To investigate the presence and localization of IL-1ra and IL-1 alpha in skin.
- To determine the ratio of IL-1ra to IL-1 alpha in normal versus psoriatic skin.
Main Methods:
- Fractionation of epidermal cytosol by size exclusion and anion exchange chromatography.
- Enzyme-linked immunosorbent assays (ELISAs) to quantify IL-1ra and IL-1 alpha.
- Western blot analysis for IL-1ra protein size.
- Polymerase chain reaction (PCR) for IL-1ra mRNA.
- Immunofluorescence microscopy for IL-1ra protein localization.
Main Results:
- IL-1 inhibitory bioactivity in epidermal cytosol was identified as IL-1ra.
- Both IL-1ra and IL-1 alpha were detected in normal and psoriatic epidermis.
- The ratio of IL-1ra to IL-1 alpha was significantly increased in psoriatic skin.
- IL-1ra mRNA and protein were present in both normal and psoriatic epidermis, with altered distribution in psoriatic lesions.
- A keratinocyte-derived IL-1ra variant was identified.
Conclusions:
- The balance between IL-1ra and IL-1 alpha is altered in psoriatic skin.
- IL-1ra may influence keratinocyte growth, differentiation, and IL-1-mediated inflammation in the skin.
- These findings suggest a potential therapeutic target for psoriasis and other inflammatory skin conditions.
Abstract:
The objective of these studies was to characterize the IL-1 inhibitory activity present in normal and psoriatic epidermis from clinically stable lesions. Fractionation of normal epidermal cytosol on a molecular sizing column failed to reveal the presence of IL-1 inhibitory bioactivity. However, specific ELISAs indicated that both the IL-1 receptor antagonist (IL-1ra) and IL-1 alpha were present in overlapping peaks. Further fractionation of the normal epidermal cytosol by anion exchange chromatography separated these two molecules, revealing the IL-1 inhibitory bioactivity of the IL-1ra molecule. Similar studies on psoriatic epidermal cytosol indicated the presence of IL-1 inhibitory bioactivity and IL-1ra protein. The IL-1 inhibitory bioactivity of both normal and psoriatic cytosol was neutralized by a mAb specific for IL-1ra. The ratio of IL-1ra to IL-1 alpha proteins was significantly increased in involved psoriatic skin compared with normal skin. By Western blot analysis this IL-1ra was approximately 20 kD, slightly larger than monocyte-derived IL-1ra and equivalent to an intracellular variant of IL-1ra expressed by keratinocytes. Polymerase chain reaction indicated the presence of mRNA for both forms of IL-1ra in normal epidermis, with both forms increased in psoriatic-involved skin. Immunofluorescence studies revealed the IL-1ra protein to be concentrated in the stratum granulosum of normal skin and in the basal-midbasal layers of psoriatic epidermis. These results suggest that the balance between intracellular IL-1ra and IL-1 alpha may be an important influence on keratinocyte growth and/or differentiation, as well as on the inflammatory potential of IL-1 in injured skin.
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