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首页> 外文期刊>Mediators of inflammation >Modulation of NK Cell Autocrine-Induced Eosinophil Chemotaxis by Interleukin-15 and Vitamin D3: A Possible NK-Eosinophil Crosstalk via IL-8 in the Pathophysiology of Allergic Rhinitis
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Modulation of NK Cell Autocrine-Induced Eosinophil Chemotaxis by Interleukin-15 and Vitamin D3: A Possible NK-Eosinophil Crosstalk via IL-8 in the Pathophysiology of Allergic Rhinitis

机译:白介素15和维生素D3对NK细胞自分泌诱导的嗜酸性粒细胞趋化性的调节:变应性鼻炎的病理生理学中可能通过IL-8的NK-嗜酸性粒细胞串扰。

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Natural killer cells (NK) secrete eosinophilotactic cytokines, however, whether they contribute to eosinophil chemotaxis by secreting IL-8 is not known. We investigated the ability of CD56+CD3-ve (NK cells) to induce chemotaxis of peripheral blood eosinophils from allergic rhinitis (AR) patients, through IL-8 secretion, and the effects of IL-15, the NK cell proactivating cytokine, and calcitriol: 1α, 25-dihydroxy Vitamin D3(vitamin D3), the immunomodulator agent, in this scenario. Herein, it is shown that supernatants from unstimulated NK cells exhibited chemotactic activity against eosinophil. This effect was significantly augmented by IL-15 (1 ng/mL) treatment, resulting in an increase in the chemotactic index of approximately 3 folds and was abrogated by neutralizing antibody (Ab) to IL-8 in a dose-dependent fashion. The amount of IL-8 secreted by NK cells was increased by IL-15 treatment from levels of88.64±21.5to178.9±23.6 Pg/mL and was significantly reduced by 10−6 M vitamin D3to levels of59.2±16.3 Pg/mL. Our results indicate a novel inflammatory crosstalk between NK cells and eosinophils via IL-15/IL-8 axis that can be modulated by vitamin D3.
机译:自然杀伤细胞(NK)分泌嗜酸性粒细胞趋化因子,但是,它们是否通过分泌IL-8促进嗜酸性粒细胞趋化性尚不清楚。我们调查了CD56 + CD3-ve(NK细胞)通过IL-8分泌诱导过敏性鼻炎(AR)患者外周血嗜酸性粒细胞趋化性的能力,以及IL-15,NK细胞激活细胞因子和IL-15的作用。骨化三醇:1α,25-二羟基维生素D3(维生素D3),在这种情况下为免疫调节剂。在此,显示来自未刺激的NK细胞的上清液表现出针对嗜酸性粒细胞的趋化活性。 IL-15(1 ng / mL)处理可显着增强该作用,导致趋化指数增加约3倍,并以剂量​​依赖的方式中和针对IL-8的抗体(Ab)消除。通过IL-15处理,NK细胞分泌的IL-8量从88.64±21.5增加到178.9±23.6 Pg / mL,并通过10-6 M维生素D3显着减少到59.2±16.3 Pg /毫升我们的结果表明,NK细胞与嗜酸性粒细胞之间通过IL-15 / IL-8轴发生了新型的炎症串扰,该串扰可以被维生素D3调节。

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