Related Experiment Video
Updated: May 11, 2026

Saturated Fatty Acids Induce Ceramide-associated Macrophage Cell Death
Published on: October 31, 2017
Barrier abnormality due to ceramide deficiency leads to psoriasiform inflammation in a mouse model
Kimiko Nakajima1, Mika Terao2, Mikiro Takaishi1
1Department of Dermatology, Kochi Medical School Kochi University, Nankoku, Japan.
Abstract:
It has been recognized that ceramides are decreased in the epidermis of patients with psoriasis and atopic dermatitis. Here, we generated Sptlc2 (serine palmitoyltransferase long-chain base subunit 2)-targeted mice (SPT-cKO mice), thereby knocking out serine palmitoyltransferase (SPT), the critical enzyme for ceramide biosynthesis, in keratinocytes. SPT-cKO mice showed decreased ceramide levels in the epidermis, which impaired water-holding capacity and barrier function. From 2 weeks of age, they developed skin lesions with histological aberrations including hyperkeratosis, acanthosis, loss of the granular layer, and inflammatory cell infiltrates. Epidermal Langerhans cells showed persistent activation and enhanced migration to lymph nodes. Skin lesions showed upregulation of psoriasis-associated genes, such as IL-17A, IL-17F, IL-22, S100A8, S100A9, and β-defensins. In the skin lesions and draining lymph nodes, there were increased numbers of γδ T cells that produced IL-17 (γδ-17 cells), most of which also produced IL-22, as do Th17 cells. Furthermore, IL-23-producing CD11c(+) cells were observed in the lesions. In vivo treatment of SPT-cKO mice with an anti-IL-12/23p40 antibody ameliorated the skin lesions and reduced the numbers of γδ-17 cells. Therefore, we conclude that a ceramide deficiency in the epidermis leads to psoriasis-like lesions in mice, probably mediated by IL-23-dependent IL-22-producing γδ-17 cells.
Insights
Ceramide deficiency in mouse skin causes psoriasis-like symptoms by activating immune cells. This study highlights the role of ceramide biosynthesis in skin barrier function and inflammation.
Area of Science:
- Dermatology
- Immunology
- Biochemistry
Background:
- Reduced epidermal ceramides are linked to psoriasis and atopic dermatitis.
- Ceramides are crucial for skin barrier function and hydration.
Purpose of the Study:
- To investigate the role of epidermal ceramide biosynthesis in skin inflammation.
- To establish a mouse model for ceramide deficiency-induced skin lesions.
Main Methods:
- Generated serine palmitoyltransferase (SPT) knockout mice (SPT-cKO) in keratinocytes.
- Analyzed skin barrier function, histology, and immune cell populations.
- Assessed gene expression of psoriasis-associated markers and cytokine profiles.
Main Results:
- SPT-cKO mice exhibited reduced epidermal ceramides, impaired barrier function, and developed psoriasis-like skin lesions.
- Lesions showed hyperkeratosis, acanthosis, and inflammatory infiltrates with activated Langerhans cells.
- Upregulation of IL-17A, IL-17F, IL-22, and increased γδ T cells producing IL-17 and IL-22 were observed.
- IL-23-producing cells were present, and anti-IL-12/23p40 treatment ameliorated lesions.
Conclusions:
- Epidermal ceramide deficiency induces psoriasis-like skin lesions in mice.
- The mechanism involves IL-23-dependent activation of IL-22-producing γδ T cells.
- Restoring ceramide levels may offer therapeutic potential for inflammatory skin diseases.