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Toll-like receptor-mediated eosinophil–basophil differentiation: autocrine signalling by granulocyte–macrophage colony-stimulating factor in cord blood haematopoietic progenitors

机译:Toll样受体介导的嗜酸性粒细胞-嗜碱性粒细胞分化:脐血造血祖细胞中粒细胞-巨噬细胞集落刺激因子的自分泌信号传导

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摘要

Eosinophils are multi-functional leucocytes that play a role in inflammatory processes including allergy and infection. Although bone marrow (BM) inflammatory cells are the main source of eosinophil-basophil (Eo/B) differentiation-inducing cytokines, a recent role has been demonstrated for cytokine induction through Toll-like receptor (TLR)-mediated signalling in BM progenitors. Having previously demonstrated that cord blood (CB) progenitors induce Eo/B colony-forming units (CFU) after lipopolysaccharide (LPS) stimulation, we sought to investigate the intracellular mechanisms by which LPS induces Eo/B differentiation. Freshly isolated CD34-enriched human CB cells were stimulated with LPS (and/or pharmacological inhibitors) and assessed for alterations in haematopoietic cytokine receptor expression and signalling pathways by flow cytometry, Eo/B CFU in methylcellulose cultures, and cytokine secretion using Luminex assays. The LPS stimulation resulted in a significant increase in granulocyte–macrophage colony-stimulating factor (GM-CSF)-responsive, as opposed to interleukin-5-responsive, Eo/B CFU, which also correlated with significant increases in CD34+ cell GM-CSFRα expression. Functionally, CB CD34+ cells secrete abundant amounts of GM-CSF following LPS stimulation, via a p38 mitogen-activated protein kinase (MAPK)-dependent mechanism; this secretion was responsible for Eo/B CFU formation ex vivo, as shown by antibody blockade. We show for the first time that LPS stimulation of CB progenitor cells results in autocrine activation of p38 MAPK-dependent GM-CSF secretion facilitating Eo/B differentiation ex vivo. This work provides evidence that early life exposure to products of bacterial agents can modulate Eo/B differentiation, representing a novel mechanism by which progenitor cells can respond to microbial stimuli and so affect immune and inflammatory responses.
机译:嗜酸性粒细胞是多功能白细胞,在包括过敏和感染在内的炎症过程中起作用。尽管骨髓(BM)炎症细胞是诱导嗜酸性粒细胞-嗜碱性粒细胞(Eo / B)分化的细胞因子的主要来源,但最近的作用已被证明可通过Toll样受体(TLR)介导的BM祖细胞诱导细胞因子。先前已经证明了脐血(CB)祖细胞在脂多糖(LPS)刺激后诱导Eo / B集落形成单位(CFU),我们试图研究LPS诱导Eo / B分化的细胞内机制。用LPS(和/或药理抑制剂)刺激新鲜分离的富含CD34的人CB细胞,并通过流式细胞术,甲基纤维素培养物中的Eo / B CFU和使用Luminex分析的细胞因子分泌评估造血细胞因子受体表达和信号通路的变化。 LPS刺激导致对白细胞-巨噬细胞集落刺激因子(GM-CSF)的应答显着增加,而对白细胞介素5的应答,Eo / B CFU显着增加,这也与CD34 +的显着增加相关细胞GM-CSFRα表达。在功能上,LPS刺激后,CB CD34 + 细胞通过p38促分裂原活化蛋白激酶(MAPK)依赖性机制分泌大量GM-CSF。如抗体阻断所示,该分泌负责离体形成Eo / B CFU。我们首次显示,LPS刺激CB祖细胞导致自分泌激活p38 MAPK依赖的GM-CSF分泌,促进离体Eo / B分化。这项工作提供了证据,表明生命早期暴露于细菌制剂的产物可以调节Eo / B分化,这代表了一种新的机制,祖细胞可以通过该机制对微生物刺激做出反应,从而影响免疫和炎症反应。

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