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Modulatory effects of 5-fluorouracil on the rhythmic expression of circadian clock genes: a possible mechanism of chemotherapy-induced circadian rhythm disturbances.

机译:5-氟尿嘧啶对昼夜节律基因节律性表达的调节作用:化疗引起的昼夜节律紊乱的可能机制。

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The circadian clock system is necessary to adapt endogenous physiological functions to daily variations in environmental conditions. Abnormality in circadian rhythms, such as the sleep-wake cycle and the timing of hormonal secretions, is implicated in various physiological and psychiatrical disorders. Recent molecular studies have revealed that oscillation in the transcription of specific clock genes plays a central role in the generation of 24h cycles of physiology and behavior. It has been noticed that patients receiving chemotherapeutic agents experience disturbances in their behavioral and physical performances, including circadian rhythms. To explore the underlying mechanism of chemotherapeutic agent-induced disturbance of these rhythms, we investigated the influence of 5-fluorouracil (5-FU), one of the most widely used chemotherapeutic agents for the treatment of cancers, on the expression of clock genes. Treatment of cultured NIH3T3 cells with 5-FU for 48 h resulted in a significant reduction ofmRNA levels of Period1 (Per1) and Period2 (Per2) without affecting cell viability; however, treatment with the same amount of uracil, a structural analog of 5-FU, had little effect on the expression of clock genes. Consistent with its inhibitory actions, continuous administration of 5-FU (2 mg/kg/h) to mice attenuated the oscillation in the expressions of Per1 and Per2 in the liver and suprachiasmatic nuclei, the center of the mammalian circadian clock. These results reveal a possible pharmacological action by the chemotherapeutic agent 5-FU on the circadian clock mechanism, which is the underlying cause of its adverse effects on 24-h rhythms of physiology and behavior.
机译:为了使内源性生理功能适应环境条件的日常变化,昼夜节律系统是必不可少的。昼夜节律异常,例如睡眠-觉醒周期和荷尔蒙分泌的时机,与各种生理和精神疾病有关。最近的分子研究表明,特定时钟基因转录的振荡在24h生理和行为周期的产生中起着核心作用。已经注意到,接受化学治疗剂治疗的患者的行为和身体表现受到干扰,包括昼夜节律。为了探索化学治疗剂引起的这些节律紊乱的潜在机制,我们研究了5-氟尿嘧啶(5-FU)对时钟基因的表达的影响,5-氟尿嘧啶是治疗癌症最广泛使用的化学治疗剂之一。用5-FU处理培养的NIH3T3细胞48小时,可显着降低Period1(Per1)和Period2(Per2)的mRNA水平,而不会影响细胞活力。但是,用相同量的尿嘧啶(5-FU的结构类似物)处理对时钟基因的表达影响很小。与其抑制作用一致,对小鼠连续施用5-FU(2 mg / kg / h)可以减弱肝脏和跨视神经上核(哺乳动物昼夜节律的中心)中Per1和Per2表达的振荡。这些结果揭示了化学治疗剂5-FU对昼夜节律机制的可能药理作用,这是其对24小时生理和行为节律产生不利影响的根本原因。

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