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Updated: Aug 13, 2026

Isolation and Culture of Primary Mouse Keratinocytes from Neonatal and Adult Mouse Skin
Published on: July 14, 2017
Interleukin-8 stimulates calcium transients and promotes epidermal cell proliferation
A Tuschil1, C Lam, A Haslberger
1Sandoz Forschungsinstitut, Vienna, Austria.
Insights
Interleukin-8 (IL-8) stimulates calcium signaling and proliferation in skin cells, suggesting it acts as an autocrine growth factor in psoriasis. This finding expands the known targets of IL-8 beyond neutrophils.
Area of Science:
- Dermatology
- Cell Biology
- Immunology
Background:
- Psoriatic skin contains high levels of biologically active interleukin-8 (IL-8).
- IL-8 may contribute to keratinocyte hyperproliferation observed in psoriasis.
Purpose of the Study:
- To investigate the effect of IL-8 on epidermal growth and calcium signaling in keratinocytes.
- To determine if IL-8 functions as an autocrine growth factor.
Main Methods:
- Monitoring cytosolic free Ca++ transients in HaCat cells and normal human keratinocytes using indo-1AM.
- Measuring epidermal cell proliferation in response to IL-8.
- Utilizing polyclonal anti-IL-8 antibody to block IL-8 effects.
- Observing neutrophil responses to IL-8.
Main Results:
- IL-8 induced rapid, transient, and concentration-dependent rises in cytosolic free Ca++ in HaCat cells and normal keratinocytes.
- Half-maximal effect of IL-8 on Ca++ mobilization was observed at 1.2 nM.
- IL-8 promoted epidermal cell proliferation, which was blocked by anti-IL-8 antibody.
- Human neutrophils also exhibited Ca++ mobilization in response to IL-8.
Conclusions:
- IL-8 acts as an autocrine growth factor for epidermal cells, influencing calcium signaling and proliferation.
- IL-8 responsive target cells extend beyond neutrophils to include keratinocytes.
- These findings highlight IL-8's significant role in skin biology and psoriasis pathogenesis.
Abstract:
The presence of large amounts of biologically active interleukin-8 (IL-8) in psoriatic involved skin suggests that it may contribute, in part, to the changes observed in psoriasis, including hyperproliferation of keratinocytes. To examine the effect of IL-8 on epidermal growth, we monitored cytosolic free Ca++ transients in human keratinocytes adult skin epidermis calcium reduced level, temperature elevated (HaCat) cells and normal keratinocytes loaded with the cell permeable, acetoxymethyl derivative, indo-1AM. Addition of IL-8 (0.06-47 nM) to the HaCat cells induced rapid rises in cytosolic free Ca++ from resting levels of 145 +/- 38 to peak levels of 889 +/- 10 nM. The induced rises in Ca++ were transient and concentration dependent. Half maximal effect was observed at 1.2 nM. Normal keratinocytes also responded to IL-8 (6 nM) by rises in cytosolic free Ca++ from a pre-stimulated level of 269 nM to transient peak value of 393 nM. In addition, IL-8 promoted epidermal cell proliferation. Polyclonal anti-IL-8 antibody blocked IL-8-induced calcium changes and proliferation. Under similar conditions, human neutrophils also responded to IL-8 in a similar dose range by a rapid and transient mobilization of Ca++. The findings indicate that IL-8 has a wider range of responsive target cells than hitherto thought and acts as an autocrine growth factor.
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