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Updated: Feb 17, 2026

Development and Functional Characterization of Murine Tolerogenic Dendritic Cells
Published on: May 18, 2018
Phenotype and function of murine discrete Peyer's patch macrophage derived - dendritic cells
Levi H C Makala1, Julio C S Reyes, Yoshifumi Nishikawa
1National Research Center for Protozoan Diseases, Obihiro University of Agriculture and Veterinary Medicine, Inada-cho, Hokkaido, Japan.
Insights
Researchers generated discrete Peyer's patch dendritic cells (DPP-DC) from macrophages using GM-CSF and IL-4. These DPP-DC cells present antigens to T cells, offering insights into mucosal immunity regulation.
Area of Science:
- Immunology
- Cell Biology
- Mucosal Immunity
Background:
- Peritoneal cavity macrophage-derived dendritic cells (PEC-DC) function has been previously characterized.
- Dendritic cells (DCs) play a crucial role in initiating adaptive immune responses, particularly at mucosal surfaces.
- Understanding the development and function of specific DC subsets is vital for comprehending mucosal immune regulation.
Purpose of the Study:
- To generate discrete Peyer's patch dendritic cells (DPP-DC) from murine discrete Peyer's patch macrophages (DPP-Mø).
- To characterize the phenotype and functional capacity of the generated DPP-DC.
- To compare the surface antigen expression of DPP-DC with their progenitor DPP-Mø population.
Main Methods:
- Murine small intestinal discrete Peyer's patches (DPP) were mechanically disrupted.
- Macrophages were enriched through metrizamide density gradient centrifugation and adherence.
- DPP-Mø were cultured with granulocyte macrophage colony-stimulating factor (GM-CSF) and interleukin-4 (IL-4) for 7 days to generate DPP-DC.
- Characterization involved morphology, membrane antigen expression (DEC-205, F4/80, CD34, CD11c, MHC class II, CD86), and antigen presentation assays.
Main Results:
- Generated DPP-DC expressed high levels of DEC-205, F4/80, and CD34, but low CD11c.
- DPP-DC demonstrated the capacity to present soluble protein antigen to CD3(+) T cells.
- Compared to DPP-Mø, DPP-DC showed decreased MHC class II and significantly downregulated CD86 (B7-2) expression.
- High CD34 expression suggested a haemopoietic rather than myeloid origin for the generated DCs.
Conclusions:
- A novel method for generating DPP-DC from DPP-Mø using GM-CSF and IL-4 was established.
- The generated DPP-DC possess characteristics of functional antigen-presenting cells.
- These findings contribute to a deeper understanding of the regulatory networks governing mucosal immune responses.
Abstract:
The phenotype and function of peritoneal cavity macrophage-derived dendritic cells (PEC-DC) was previously reported. In this study we have gone further in using our established culture system to generated discrete Peyer's patch dendritic cells (DPP-DC) from murine discrete Peyer's patch macrophages (DPP-Mø), following stimulation with granulocyte macrophage colony stimulating factor (GM-CSF) plus interleukin 4 (IL-4) for 7 days. DPP-Mø from murine small intestines were obtained by mechanical disruption of discrete Peyer's patches (DPP), followed by metrizamide density gradient centrifugation to remove Peyer's patch resident DC and debri, after which an overnight adherent step in tissue culture medium was carried out for macrophage enrichment. Characterization of the generated DPP-DC was carried out using well-established criteria of morphology, expression of membrane antigens and capacity for antigen presentation. Dendritic cells expressed DEC-205, F4/80 and CD34 at high levels, but exhibited very low CD11c levels. They were shown to present soluble protein antigen to CD3(+) spleen T cells. A comparison of the surface antigen expression in the progenitor DPP-Mø population and the generated DPP-DC showed a significant decrease in MHC class II levels and a marked down regulation of the co-stimulatory molecule CD86 (B7-2). High expression of the haemopoietic progenitor marker CD34 indicates that the generated DC, possess a haemopoietic rather than myeloid origin. Taken together, these results may provide a better understanding of the complex network regulating mucosal immune responses.
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