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Establishment of bone marrow-derived M-CSF receptor-dependent self-renewing macrophages

机译:建立骨髓衍生的M-CSF受体依赖性自我更新巨噬细胞

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Recent studies have revealed that tissue macrophages are derived from yolk sac precursors or fetal liver monocytes, in addition to bone marrow monocytes. The relative contribution of these cells to the tissue macrophage pool is not fully understood, but embryo-derived cells are supposed to be more important because of their capacity to self-renew. Here, we show the presence of adult bone marrow-derived macrophages that retain self-renewing capacity. The self-renewing macrophages were readily obtained by long-term culture of mouse bone marrow cells with macrophage colony-stimulating factor (M-CSF), a key cytokine for macrophage development. They were non-tumorigenic and proliferated in the presence of M-CSF in unlimited numbers. Despite several differences from non-proliferating macrophages, they retained many features of cells of the monocytic lineage, including the differentiation into dendritic cells or osteoclasts. Among the transcription factors involved in the self-renewal of embryonic stem cells, Krüppel-like factor 2 (KLF2) was strongly upregulated upon M-CSF stimulation in the self-renewing macrophages, which was accompanied by the downregulation of MafB, a transcription factor that suppresses KLF2 expression. Indeed, knockdown of KLF2 led to cell cycle arrest and diminished cell proliferation in the self-renewing macrophages. Our new cell model would be useful to unravel differences in phenotype, function, and molecular mechanism of proliferation among self-renewing macrophages with different origins.? The Author(s) 2020.
机译:最近的研究表明,除了骨髓单核细胞外,组织巨噬细胞衍生自卵黄囊前体或胎儿肝单核细胞。这些细胞对组织巨噬细胞库的相对贡献尚不完全理解,但由于它们对自我更新的能力,胚胎衍生的细胞应该更加重要。在这里,我们显示存在成年骨髓衍生的巨噬细胞,其保留自更新能力。通过巨噬细胞殖民地刺激因子(M-CSF)的小鼠骨髓细胞长期培养,是巨噬细胞的关键细胞因子的自我更新巨噬细胞,是巨噬细胞发育的关键细胞因子。它们在无限数中在M-CSF存在下是非致荷的并且增殖。尽管与不增殖的巨噬细胞有几个差异,但它们保留了单核细胞谱系细胞的许多特征,包括分化成树突细胞或破骨细胞。在胚胎干细胞自我更新的转录因子中,在自我更新巨噬细胞的M-CSF刺激上强烈地上调了Krüppel样因子2(KLF2),其伴随着MAFB的下调,转录因子抑制KLF2表达。实际上,KLF2的敲低导致了自我更新巨噬细胞中细胞周期停滞和减少细胞增殖。我们的新细胞模型对于自我更新巨噬细胞的表型,功能和分子机制具有不同起源的缺陷差异。?作者2020年。

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