Plasmacytoid dendritic cells: A dendritic cell in disguise
- PMID: 37269733
- PMCID: PMC10625168
- DOI: 10.1016/j.molimm.2023.05.007
Plasmacytoid dendritic cells: A dendritic cell in disguise
Abstract
Since their discovery, the identity of plasmacytoid dendritic cells (pDCs) has been at the center of a continuous dispute in the field, and their classification as dendritic cells (DCs) has been recently re-challenged. pDCs are different enough from the rest of the DC family members to be considered a lineage of cells on their own. Unlike the exclusive myeloid ontogeny of cDCs, pDCs may have dual origin developing from myeloid and lymphoid progenitors. Moreover, pDCs have the unique ability to quickly secrete abundant levels of type I interferon (IFN-I) in response to viral infections. In addition, pDCs undergo a differentiation process after pathogen recognition that allows them to activate T cells, a feature that has been shown to be independent of presumed contaminating cells. Here, we aim to provide an overview of the historic and current understanding of pDCs and argue that their classification as either lymphoid or myeloid may be an oversimplification. Instead, we propose that the capacity of pDCs to link the innate and adaptive immune response by directly sensing pathogens and activating adaptive immune responses justify their inclusion within the DC network.
Keywords: Antigen presentation; Plasmacytoid dendritic cells; Transitional dendritic cells; Type I interferon.
Published by Elsevier Ltd.
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References
-
- Abbas Abdenour, Vu Manh Thien-Phong, Valente Michael, Collinet Nils, Attaf Noudjoud, Dong Chuang, Naciri Karima, et al. 2020. “The Activation Trajectory of Plasmacytoid Dendritic Cells in Vivo during a Viral Infection.” Nature Immunology 21 (9): 983–97. 10.1038/s41590-020-0731-4. - DOI - PMC - PubMed
-
- Alcántara-Hernández Marcela, Leylek Rebecca, Wagar Lisa E., Engleman Edgar G., Keler Tibor, Marinkovich M. Peter, Davis Mark M., Nolan Garry P., and Idoyaga Juliana. 2017. “High-Dimensional Phenotypic Mapping of Human Dendritic Cells Reveals Interindividual Variation and Tissue Specialization.” Immunity 47 (6): 1037–1050.e6. 10.1016/j.immuni.2017.11.001. - DOI - PMC - PubMed
-
- Alculumbre Solana G., Saint-André Violaine, Di Domizio Jeremy, Vargas Pablo, Sirven Philemon, Bost Pierre, Maurin Mathieu, et al. 2018. “Diversification of Human Plasmacytoid Predendritic Cells in Response to a Single Stimulus.” Nature Immunology 19 (1): 63–75. 10.1038/s41590-017-0012-z. - DOI - PubMed
-
- Baerenwaldt Anne, von Burg Nicole, Kreuzaler Matthias, Sitte Selina, Horvath Edit, Peter Annick, Voehringer David, Rolink Antonius G., and Finke Daniela. 2016. “Flt3 Ligand Regulates the Development of Innate Lymphoid Cells in Fetal and Adult Mice.” The Journal of Immunology 196 (6): 2561–71. 10.4049/jimmunol.1501380. - DOI - PubMed
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