Transcriptional and functional characterization of CD137L-dendritic cells identifies a novel dendritic cell phenotype

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作者
Zulkarnain Harfuddin
Bhushan Dharmadhikari
Siew Cheng Wong
Kaibo Duan
Michael Poidinger
Shaqireen Kwajah
Herbert Schwarz
机构
[1] National University of Singapore,Department of Physiology
[2] NUS Immunology Programme,undefined
[3] Life Sciences Institute,undefined
[4] National University of Singapore,undefined
[5] NUS Graduate School for Integrative Sciences and Engineering,undefined
[6] National University of Singapore,undefined
[7] Singapore Immunology Network,undefined
[8] Agency for Science,undefined
[9] Technology and Research,undefined
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The importance of monocyte-derived dendritic cells (DCs) is evidenced by the fact that they are essential for the elimination of pathogens. Although in vitro DCs can be generated by treatment of monocytes with GM-CSF and IL-4, it is unknown what stimuli induce differentiation of DCs in vivo. CD137L-DCs are human monocyte-derived DC that are generated by CD137 ligand (CD137L) signaling. We demonstrate that the gene signature of in vitro generated CD137L-DCs is most similar to those of GM-CSF and IL-4-generated immature DCs and of macrophages. This is reminiscent of in vivo inflammatory DC which also have been reported to share gene signatures with monocyte-derived DCs and macrophages. Performing direct comparison of deposited human gene expression data with a CD137L-DC dataset revealed a significant enrichment of CD137L-DC signature genes in inflammatory in vivo DCs. In addition, surface marker expression and cytokine secretion by CD137L-DCs resemble closely those of inflammatory DCs. Further, CD137L-DCs express high levels of adhesion molecules, display strong attachment and employ the adhesion molecule ALCAM to stimulate T cell proliferation. This study characterizes the gene expression profile of CD137L-DCs and identifies significant similarities of CD137L-DCs with in vivo inflammatory monocyte-derived DCs and macrophages.
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