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首页> 外文期刊>Journal of Immunological Methods >Simultaneous in vitro generation of human CD34(+)-derived dendritic cells and mast cells from non-mobilized peripheral blood mononuclear cells
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Simultaneous in vitro generation of human CD34(+)-derived dendritic cells and mast cells from non-mobilized peripheral blood mononuclear cells

机译:来自非动员外周血单核细胞的人CD34(+)衍生的树突细胞和肥大细胞同时发生

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Dendritic cells (DCs) and mast cells (MCs) are key players of the immune system, often coming in close proximity in peripheral tissues. The interplay of these cells is, however, still poorly understood, especially with regards to human cells. The reason for that is the absence of a well established in vitro human cell-based study system that would allow a simultaneous preparation of both cell types. In this study, we show a method for simultaneous generation of DCs and MCs from CD34(+) stem cell progenitors that were isolated from the non-adherent fraction of non-mobilized peripheral blood mononuclear cells of healthy donors. We observed that combining stem cells factor (SCF), IL-3 and GM-CSF in serum-free StemPro-34 medium allowed CD34(+) cells isolated from an equivalent of 450 ml of peripheral blood to expand to 10-92 x 10(6) cells after 7 weeks of culturing. These cultures comprised of 6-53% of DCs and 1-21% of MCs as determined by the expression of, respectively, CD11c/HLA-DR or CD117/FceRI. The DCs were CD1a(-)CD14(-), did not express co-stimulatory molecules CD80 and CD83 and chemokine receptor CCR7. However, the DCs expressed co-stimulatory molecule CD86, and had a capacity to uptake dextran, phagocyte latex particles and induce alloreactivity. MCs, on the other hand, de granulated after crosslinking of FceRI-bound IgE as determined by the externalization of CD107b. Collectively, our data show that CD34(+)-derived human DCs and MCs can be generated in a single culture using CD34(+) cells isolated from non-mobilized human peripheral blood and that this method may allow ex vivo studies on DC-MC interplay in human system.
机译:树突状细胞(DCS)和肥大细胞(MCS)是免疫系统的关键球员,通常在外周组织附近。然而,这些细胞的相互作用仍然是较差的理解,特别是关于人体细胞。原因是缺乏在体外的基于体外的基于体外的研究体系中的缺失,这将允许同时制备两种细胞类型。在该研究中,我们表明了一种从CD34(+)干细胞祖细胞同时产生DC和MC的方法,所述干细胞祖细胞与健康供体的非动员的外周血单核细胞的非粘附部分中分离的分离。我们观察到,将干细胞因子(SCF),IL-3和GM-CSF组合在无血清StemPRO-34培养基中允许CD34(+)细胞从450ml外周血中分离成10-92×10 (6)细胞培养7周后。这些培养物包含6-53%的DCS和1-21%的MCS,如分别的CD11C / HLA-DR或CD117 / Fceri确定。 DC是CD1A( - )CD14( - ),未表达共刺激分子CD80和CD83和趋化因子受体CCR7。然而,DCS表达了共刺激分子CD86,并且具有吸收葡聚糖,吞噬细胞胶乳颗粒并诱导含有含量的能力。另一方面,MCS,通过CD107B的外化确定的Fceri-Bound IgE的交联后颗粒化。集体,我们的数据显示CD34(+)衍生的人DCS和MCS可以在单一的培养物中使用从非动员的人外周血中分离的CD34(+)细胞生成,并且该方法可以允许在DC-MC上进行exvivo研究人类系统中的相互作用。

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