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Human Bone Marrow-Derived Myeloid Dendritic Cells Show an Immature Transcriptional and Functional Profile Compared to Their Peripheral Blood Counterparts and Separate from Slan+ Non-Classical Monocytes

机译:人骨髓来源的髓样树突状细胞与其外周血对应物相比显示出不成熟的转录和功能谱并与Slan +非经典单核细胞分开

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摘要

The human bone marrow (BM) gives rise to all distinct blood cell lineages, including CD1c+ (cDC2) and CD141+ (cDC1) myeloid dendritic cells (DC) and monocytes. These cell subsets are also present in peripheral blood (PB) and lymphoid tissues. However, the difference between the BM and PB compartment in terms of differentiation state and immunological role of DC is not yet known. The BM may represent both a site for development as well as a possible effector site and so far, little is known in this light with respect to different DC subsets. Using genome-wide transcriptional profiling we found clear differences between the BM and PB compartment and a location-dependent clustering for cDC2 and cDC1 was demonstrated. DC subsets from BM clustered together and separate from the corresponding subsets from PB, which similarly formed a cluster. In BM, a common proliferating and immature differentiating state was observed for the two DC subsets, whereas DC from the PB showed a more immune-activated mature profile. In contrast, BM-derived slan+ non-classical monocytes were closely related to their PB counterparts and not to DC subsets, implying a homogenous prolife irrespective of anatomical localization. Additional functional tests confirmed these transcriptional findings. DC-like functions were prominently exhibited by PB DC. They surpassed BM DC in maturation capacity, cytokine production, and induction of CD4+ and CD8+ T cell proliferation. This first study on myeloid DC in healthy human BM offers new information on steady state DC biology and could potentially serve as a starting point for further research on these immune cells in healthy conditions as well as in diseases.
机译:人骨髓(BM)产生所有不同的血细胞谱系,包括CD1c +(cDC2)和CD141 +(cDC1)髓样树突状细胞(DC)和单核细胞。这些细胞亚群也存在于外周血(PB)和淋巴样组织中。然而,就分化状态和DC的免疫作用而言,BM和PB区室之间的差异尚不清楚。 BM可以代表发育位点,也可以代表可能的效应位点,到目前为止,就不同的DC子集而言,BM知之甚少。使用全基因组转录谱,我们发现BM和PB室之间存在明显差异,并且证明了cDC2和cDC1的位置依赖性簇。来自BM的DC子集聚在一起,并与来自PB的相应子集分开,后者类似地形成一个簇。在BM中,两个DC子集观察到了常见的增殖和未成熟分化状态,而来自PB的DC显示了更多的免疫激活的成熟特征。相反,BM来源的slan +非经典单核细胞与其PB对应物密切相关,而与DC亚组无关,这意味着同质增殖,而与解剖学定位无关。其他功能测试证实了这些转录发现。 PB DC突出表现出类似DC的功能。它们在成熟能力,细胞因子产生以及CD4 +和CD8 + T细胞增殖的诱导能力方面均超过BM DC。这项关于健康人BM中髓样DC的首次研究提供了有关稳态DC生物学的新信息,并有可能作为进一步研究这些在健康状况以及疾病中的免疫细胞的起点。

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