首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Eosinophil hematopoietins antagonize the programmed cell death of eosinophils. Cytokine and glucocorticoid effects on eosinophils maintained by endothelial cell-conditioned medium.
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Eosinophil hematopoietins antagonize the programmed cell death of eosinophils. Cytokine and glucocorticoid effects on eosinophils maintained by endothelial cell-conditioned medium.

机译:嗜酸性粒细胞血生成素拮抗嗜酸性粒细胞的程序性细胞死亡。细胞因子和糖皮质激素对由内皮细胞条件培养基维持的嗜酸性粒细胞的作用。

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摘要

Granulocyte-macrophage colony-stimulating factor (GM-CSF) was established as the constitutive and elicited human umbilical vein endothelial cell-derived eosinophil viability-sustaining factor. Stimulation of endothelium cell monolayers with IL-1 alpha (5 U/ml) increased the 48-h elaboration of GM-CSF from a mean of 3.2 to a mean of 8.2 pM (P less than 0.05). Dexamethasone (100 nM) decreased the constitutive GM-CSF elaboration by 49% (P less than 0.001) but did not diminish production by IL-1 alpha-stimulated endothelium. However, eosinophil viability decreased by 21% in dexamethasone-pretreated IL-1 alpha-stimulated endothelial cell-conditioned medium (P less than 0.05), which suggested viability antagonism by glucocorticoids. After 24 h of culture, eosinophil viability for replicate cells in enriched medium alone or with 1 pM GM-CSF decreased from means of 43 and 75% to means of 21 and 54%, respectively, when dexamethasone was included (P less than 0.05). However, 10 pM GM-CSF, IL-3, or IL-5 protected the cells against dexamethasone and against endonuclease-specific DNA fragmentation. In this model system of eosinophil-tissue interactions, dexamethasone prevents the endothelial cells from inducing a pathobiologic phenotypic change in the eosinophil by suppression of GM-CSF elaboration to concentrations that are not cytoprotective. Cytokine priming by GM-CSF, IL-3, or IL-5 may account for the differential responsiveness of select eosinophilic disorders to glucocorticoids.
机译:建立了粒细胞-巨噬细胞集落刺激因子(GM-CSF)作为构成和诱发人脐静脉内皮细胞来源的嗜酸性粒细胞活力的维持因子。用IL-1α(5 U / ml)刺激内皮细胞单层,将GM-CSF的48小时加工时间从平均值3.2提高到平均值8.2 pM(P小于0.05)。地塞米松(100 nM)使GM-CSF组成成分的合成降低了49%(P小于0.001),但并未减少IL-1α刺激的内皮的产生。但是,在地塞米松预处理的IL-1α刺激的内皮细胞条件培养基中,嗜酸性粒细胞的活力降低了21%(P小于0.05),这提示糖皮质激素具有拮抗作用。培养24小时后,当加入地塞米松时,仅在富集培养基中或在1 pM GM-CSF中,复制细胞的嗜酸性粒细胞活力分别从43%和75%降低至21%和54%(P小于0.05) 。但是,10 pM GM-CSF,IL-3或IL-5可以保护细胞抵抗地塞米松和核酸内切酶特异性DNA断裂。在这个嗜酸性粒细胞-组织相互作用的模型系统中,地塞米松通过抑制GM-CSF精制至无细胞保护作用的浓度,防止内皮细胞诱导嗜酸性粒细胞的病理生物学表型变化。 GM-CSF,IL-3或IL-5引发的细胞因子可能会导致某些嗜酸性粒细胞疾病对糖皮质激素的反应不同。

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