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首页> 外文期刊>Immunobiology: Zeitschrift fur Immunitatsforschung >Induction of an anti-inflammatory human monocyte subtype is a unique property of glucocorticoids, but can be modified by IL-6 and IL-10
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Induction of an anti-inflammatory human monocyte subtype is a unique property of glucocorticoids, but can be modified by IL-6 and IL-10

机译:抗炎人类单核细胞亚型的诱导是糖皮质激素的独特性质,但可以被IL-6和IL-10修饰

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摘要

Glucocorticoids (GC) are the most widely used immunosuppressive agents in clinical medicine. Recently we showed that GC enhance survival of human monocytes and induce a specific anti-inflammatory monocyte subtype which actively induces resolution of inflammation.We now investigated if cytokines IL-4, IL-6 and IL-10, which, like GC, have mostly anti-inflammatory effects on macrophages, would have GC-like effects also on monocytes.Human monocytes were stimulated with either cytokine, GC or combination thereof, and resulting effects on apoptosis, adherence, migration, phagocytosis, ROS production and cell surface phenotype were determined. We found that IL-4, IL-6, and IL-10 had either less or different effects on various anti-inflammatory functions of monocytes compared to GC. As such, IL-4 and IL-6 alone did not delay apoptosis while IL-10 even enhanced it. However, IL-6 or IL-10 increased GC-mediated protection from apoptosis when applied together with GC.Thus, the potential of GC to induce anti-inflammatory human monocytes is unique and not mimicked by the investigated cytokines. However, IL-6 and IL-10 amplify GC-induced anti-inflammatory and pro-resolution mechanisms by enhancing survival of GC-induced monocytes and thus sustaining their function. This combined effect of GC and cytokines could be important for the physiological switch from amplification towards resolution phase of inflammation.
机译:糖皮质激素(GC)是临床医学中使用最广泛的免疫抑制剂。最近,我们发现GC可以增强人类单核细胞的存活率,并诱导一种特定的消炎性单核细胞亚型,该亚型可以积极诱导炎症的消退。我们现在研究了像GC一样的细胞因子IL-4,IL-6和IL-10是否主要具有对单核细胞具有抗炎作用,对单核细胞也具有类似GC的作用。用细胞因子,GC或其组合刺激人单核细胞,并测定其对凋亡,粘附,迁移,吞噬作用,ROS产生和细胞表面表型的影响。我们发现,与GC相比,IL-4,IL-6和IL-10对单核细胞的各种抗炎功能的影响较小或不同。因此,单独的IL-4和IL-6不会延迟细胞凋亡,而IL-10甚至可以增强它。然而,IL-6或IL-10与GC一起使用时可增强GC介导的细胞凋亡保护作用。因此,GC诱导抗炎性人类单核细胞的潜力是独特的,并且不受所研究的细胞因子的模仿。但是,IL-6和IL-10通过增强GC诱导的单核细胞的存活并因此维持其功能来放大GC诱导的抗炎和促拆分机制。 GC和细胞因子的这种联合作用对于从炎症放大到消退阶段的生理转换可能很重要。

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