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The role of glucocorticoid hormones in interleukin-1 signal transduction via the sphingomyelin pathway

机译:糖皮质激素通过鞘磷脂途径在白介素1信号转导中的作用

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Interleukin-1 and glucocorticoid hormones are the key transmitters of interaction between the neuroendocrine and immune systems. To study the molecular mechanisms of immunomodulatory effects of Interleukin-1 and glucocorticoid hormones, a search for changes in activity of neutral sphingomyelinase: the main marker of initiation of Interleukin-1beta signal transduction via the sphingomyelin pathway in target cells, was accomplished. The Interleukin-1beta was found to activate neutral sphingomyelinase both in P2 fraction of murine brain cortex and membranes of immune-competent cells. Experimental modifications of endogenous glucocorticoid level in the mouse blood were for the first time shown to induce changes in neutral sphingomyelinase activity in membranes of the cells of the immune and nervous systems. It appears that the sphingomyelinase pathway of Interleukin-1beta signaling might be a possible target for glucocorticoid hormones' immune-modulating effects. sfingomielinovomu puti. akademiia nauk.
机译:白介素-1和糖皮质激素是神经内分泌与免疫系统之间相互作用的关键传递者。为了研究白介素-1和糖皮质激素激素的免疫调节作用的分子机制,完成了对中性鞘磷脂酶活性变化的搜索:中性鞘磷脂酶:通过鞘磷脂途径在靶细胞中启动白介素-1β信号转导的主要标志。发现白介素-1β在鼠脑皮质的P2部分和具有免疫功能的细胞膜中均激活中性鞘磷脂酶。小鼠血液中内源性糖皮质激素水平的实验性修饰首次显示出可诱导免疫和神经系统细胞膜中性鞘磷脂酶活性的变化。看来,白介素-1β信号传导的鞘磷脂酶途径可能是糖皮质激素激素免疫调节作用的可能靶标。 sfingomielinovomu普蒂。阿卡迪亚娜克

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