首页> 外文OA文献 >Cysteinyl-leukotriene type 1 receptors transduce a critical signal for the up-regulation of eosinophilopoiesis by interleukin-13 and eotaxin in murine bone marrow
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Cysteinyl-leukotriene type 1 receptors transduce a critical signal for the up-regulation of eosinophilopoiesis by interleukin-13 and eotaxin in murine bone marrow

机译:半胱氨酰白三烯1型受体转导关键信号,通过小鼠骨髓中白介素13和嗜酸性粒细胞趋化因子上调嗜酸性粒细胞生成

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摘要

IL-13 and eotaxin play important, inter-related roles in asthma models. In the lungs, CysLT, produced by the 5-LO-LTC4S pathway, mediate some local responses to IL-13 and eotaxin; in bone marrow, CysLT enhance IL-5-dependent eosinophil differentiation. We examined the effects of IL-13 and eotaxin on eosinophil differentiation. Semi-solid or liquid cultures were established from murine bone marrow with GM-CSF or IL-5, respectively, and the effects of IL-13, eotaxin, or CysLT on eosinophil colony formation and on eosinophil differentiation in liquid culture were evaluated, in the absence or presence of: a) the 5-LO inhibitor zileuton, the FLAP inhibitor MK886, or the CysLT1R antagonists, montelukast and MK571; b) mutations that inactivate 5-LO, LTC4S, or CysLT1R; and c) neutralizing mAb against eotaxin and its CCR3 receptor. Both cytokines enhanced GM-CSF-dependent eosinophil colony formation and IL-5-stimulated eosinophil differentiation. Although IL-13 did not induce eotaxin production, its effects were abolished by anti-eotaxin and anti-CCR3 antibodies, suggesting up-regulation by IL-13 of responses to endogenous eotaxin. Anti-CCR3 blocked eotaxin completely. The effects of both cytokines were prevented by zileuton, MK886, montelukast, and MK571, as well as by inactivation of the genes coding for 5-LO, LTC4S, and CysLT1R. In the absence of either cytokine, these treatments or mutations had no effect. These findings provide evidence for: a) a novel role of eotaxin and IL-13 in regulating eosinophilopoiesis; and b) a role for CysLTRs in bone marrow cells in transducing cytokine regulatory signals.
机译:IL-13和嗜酸性粒细胞趋化因子在哮喘模型中起着重要的,相互关联的作用。在肺中,由5-LO-LTC4S途径产生的CysLT介导对IL-13和嗜酸性粒细胞趋化因子的某些局部反应。在骨髓中,CysLT增强依赖IL-5的嗜酸性粒细胞分化。我们检查了IL-13和嗜酸性粒细胞趋化因子对嗜酸性粒细胞分化的影响。在鼠骨髓中分别建立了具有GM-CSF或IL-5的半固体或液体培养物,并评估了IL-13,嗜酸性粒细胞趋化因子或CysLT对液体培养物中嗜酸性粒细胞集落形成和嗜酸性粒细胞分化的影响。是否存在:a)5-LO抑制剂齐留通,FLAP抑制剂MK886或CysLT1R拮抗剂,孟鲁司特和MK571; b)使5-LO,LTC4S或CysLT1R失活的突变; c)中和mAb对抗eotaxin及其CCR3受体。两种细胞因子均增强了GM-CSF依赖性嗜酸性粒细胞集落的形成和IL-5刺激的嗜酸性粒细胞分化。尽管IL-13不会诱导嗜酸性粒细胞趋化因子的产生,但抗eotaxin和抗CCR3抗体消除了它的作用,表明IL-13对内源性嗜酸性粒细胞趋化因子的应答上调。抗CCR3完全阻断了趋化因子。齐留通,MK886,孟鲁司特和MK571以及编码5-LO,LTC4S和CysLT1R的基因失活可防止两种细胞因子的作用。在两种细胞因子都不存在的情况下,这些治疗或突变均无效。这些发现为:a)嗜酸性粒细胞趋化因子和IL-13在调节嗜酸性粒细胞生成中的新作用; b)CysLTRs在骨髓细胞中转导细胞因子调节信号中的作用。

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