Systemic lupus erythematosus (SLE) is an autoimmune disease characterized by inflammation of various organs such as skin, kidneys, bones, and brain and the presence of autoantibodies. Although the cause of SLE is not completely understood, environmental factors, genetic susceptibility, hormone factors, and environmental factors are thought to play essential roles in the pathogenesis of SLE. Among environmental factors, the microbiota are linked to the development of different autoimmune diseases. The microbiota in the nasal cavity and gut are involved in SLE development, but the influence of skin microbiota is still unclear. Here, we demonstrated that epithelial cell–specific IκBζ-deficient (
Nfkbiz
ΔK5
) mice showed spontaneous skin inflammation with increased abundance of
Staphylococcus aureus
on the skin. When
S. aureus
was epicutaneously applied on
Nfkbiz
ΔK5
mice,
Nfkbiz
ΔK5
mice developed SLE-associated autoantibodies, anti-dsDNA antibodies, anti-Sm antibodies, and glomerulonephritis with IgG deposition. Epicutaneous
S. aureus
application significantly increased staphylococcal colonization on the skin of
Nfkbiz
ΔK5
mice with reduced expression of several antimicrobial peptides in the skin. This staphylococcal skin colonization promoted caspase-mediated keratinocyte apoptosis and neutrophil activation, inducing the interleukin-23 (IL-23)/IL-17 immune response by activating dendritic cells and T cells. Furthermore, the subcutaneous administration of anti–IL-23p19 and anti–IL-17A antibodies alleviated the systemic autoimmune response. Together, these findings underscore epithelial-immune cross-talk disturbances caused by skin dysbiosis as an essential mediator inducing autoimmune diseases.
Primary cutaneous anaplastic large cell lymphoma (PCALCL) is a rare variant of cutaneous T cell lymphoma (CTCL) characterized by CD30-expressing large atypical cells with kidney-shaped nuclei called hallmark cells. Since PCALCL is a rare variant of CTCL, the treatment of PCALCL is still controversial. In this report, a case of PCALCL successfully treated with denileukin diftitox as second-line therapy is described. Interestingly, the administration of denileukin diftitox decreased CD8+ T cells, CD25+ cells, granulysin-bearing lymphocytes, and CD163+ macrophages. The present case suggests that denileukin diftitox might induce an anti-lymphoma effect as well as modulate the tumor microenvironment.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.