Exp Mol Med.  2007 Aug;39(4):439-449.

Expression of dendritic cell markers on cultured neutrophils and its modulation by anti-apoptotic and pro-apoptotic compounds

Affiliations
  • 1Department of Biochemistry, School of Medicine, Medical Research Center for Cancer Molecular Therapy, Dong-A University, Busan 602-714, Korea. jykwak@dau.ac.kr

Abstract

Neutrophils are also known to acquire the characteristics of dendritic cells (DCs) under the appropriate conditions. In this study, neutrophils were cultivated in vitro in the presence or absence of compounds modulating their survival in an attempt to characterize the expression profile of the DC markers. Higher MHC-II, CD80, CD86, CD83, and CD40 expression levels were detected on the surface of the cultured neutrophils for 24 h than on the freshly isolated cells. The annexin V-positive cells showed a higher expression level of the DC markers than the annexin V-negative cells. The population of neutrophils double stained with annexin V and the DC markers increased after being incubated with agonistic anti-Fas Ab. LPS, the anti-apoptotic compound, decreased the CD86 and MHC-II expression levels but 50-60% of the DC marker-positive cells were detected in the annexin V-positive cells. In contrast, CD80, CD86, CD83, and HLA-DR mRNA levels increased in the GM-CSF-treated neutrophils but not in the anti-Fas Ab-treated neutrophils. T cell proliferation was inhibited by co-culturing them with anti-Fas Ab- or LPS-treated neutrophils at a high neutrophil:T cell ratio. However, the superantigen-mediated T cell proliferation was increased by the LPS-treated neutrophils but decreased by the anti-Fas Ab-treated neutrophils. There was a lower level of interferon-gamma production in the T cells co-cultured with anti-Fas Ab-treated neutrophils than with the LPS-treated neutrophils. This suggests that apoptotic neutrophils express DC markers on their surface and the differential expression of DC markers might have a detrimental effect on the immune reaction.

Keyword

antigen-presenting cells; antigens, CD95; apoptosis; dendritic cells; neutrophils

MeSH Terms

Antigen Presentation
Antigens, CD/biosynthesis
Antigens, CD95/pharmacology
Antigens, Differentiation/*biosynthesis
*Apoptosis
Cells, Cultured
Dendritic Cells/*metabolism
Humans
Lipopolysaccharides/pharmacology
Lymphocyte Activation
Neutrophils/*metabolism/physiology
T-Lymphocytes/immunology
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