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Temporal Regulation of Cytokines by the Orcadian Clock

机译:Orcadian Clock对细胞因子的时间调节

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Several parameters of the immune system exhibit oscillations with a period of approximately 24 hours that refers to "circadian rhythms." Such daily variations in host immune system status might evolve to maximize immune reactions at times when encounters with pathogens are most likely to occur. However, the mechanisms behind circadian immunity have not been fully understood. Recent studies reveal that the internal time keeping system "circadian clock" plays a key role in driving the daily rhythms evident in the immune system. Importantly, several studies unveil molecular mechanisms of how certain clock proteins (e.g., BMAL1 and CLOCK) temporally regulate expression of cytokines. Since cytokines are crucial mediators for shaping immune responses, this review mainly summarizes the new knowledge that highlights an emerging role of the circadian clock as a novel regulator of cytokines. A greater understanding of circadian regulation of cytokines will be important to exploit new strategies to protect host against infection by efficient cytokine induction or to treat autoimmunity and allergy by ameliorating excessive activity of cytokines.
机译:免疫系统的一些参数表现出大约24小时的振荡,这称为“昼夜节律”。当最有可能与病原体发生接触时,宿主免疫系统状态的这种每日变化可能演变成最大化免疫反应。但是,尚未完全了解昼夜节律免疫的机制。最近的研究表明,内部计时系统“生物钟”在驱动免疫系统中明显的日常节律中起着关键作用。重要的是,一些研究揭示了某些时钟蛋白(例如BMAL1和CLOCK)如何在时间上调节细胞因子表达的分子机制。由于细胞因子是影响免疫反应的关键介质,因此本综述主要总结了新知识,这些新知识突显了生物钟作为细胞因子的新型调节剂的新兴作用。深入了解细胞因子的昼夜节律调节对于开发新策略来保护宿主免受有效细胞因子诱导的感染或通过减轻细胞因子的过度活性来治疗自身免疫性疾病和变态反应具有重要意义。

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