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Interconnection between circadian clocks and thyroid function

机译:昼夜节点与甲状腺功能之间的互连

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摘要

Circadian rhythmicity is an approximately 24-h cell-autonomous period driven by transcription-translation feedback loops of specific genes, which are referred to as 'circadian clock genes'. In mammals, the central circadian pacemaker, which is located in the hypothalamic suprachiasmatic nucleus, controls peripheral circadian clocks. The circadian system regulates virtually all physiological processes, which are further modulated by changes in the external environment, such as light exposure and the timing of food intake. Chronic circadian disruption caused by shift work, travel across time zones or irregular sleep-wake cycles has long-term consequences for our health and is an important lifestyle factor that contributes to the risk of obesity, type 2 diabetes mellitus and cancer. Although the hypothalamic-pituitary-thyroid axis is under the control of the circadian clock via the suprachiasmatic nucleus pacemaker, daily TSH secretion profiles are disrupted in some patients with hypothyroidism and hyperthyroidism. Disruption of circadian rhythms has been recognized as a perturbation of the endocrine system and of cell cycle progression. Expression profiles of circadian clock genes are abnormal in well-differentiated thyroid cancer but not in the benign nodules or a healthy thyroid. Therefore, the characterization of the thyroid clock machinery might improve the preoperative diagnosis of thyroid cancer.
机译:昼夜节律是由特定基因的转录翻译反馈回路驱动的大约24小时的细胞自主时期,该反馈循环被称为“昼夜钟表基因”。在哺乳动物中,中央昼夜节教起搏器,位于下丘脑的上丘脑核心,控制外围昼夜周昼夜时钟。昼夜节控系统几乎调节了所有生理过程,这些过程是通过外部环境的变化进一步调节,例如曝光和食物摄入的时机。慢性昼夜循环中断由班次工作引起,跨时区或不规则的睡眠周期旅行对我们的健康有长期后果,并且是有助于肥胖风险的重要生活方式因素,2型糖尿病患者和癌症。虽然下丘脑 - 垂体 - 甲状腺轴在通过Suprachiasmatic核心起搏器的控制下,但每日TSH分泌型在一些甲状腺功能亢进症和甲状腺功能亢进症患者中被破坏。昼夜节律的破坏已被认为是内分泌系统和细胞周期进展的扰动。昼夜钟表基因的表达简档在良好分化的甲状腺癌中异常,但不在良性结节或健康的甲状腺中。因此,甲状腺钟机械的表征可能改善甲状腺癌的术前诊断。

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