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MON-015 Pregnancy Adapts Circadian Rhythms in the Reproductive Axis: Impact on Labor Regulating Drug Efficacy

机译:Mon-015妊娠在生殖轴上适应昼夜节律:对劳动力调节药物疗效的影响

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摘要

Molecular and behavioral timekeeping is regulated by the circadian system represented on the cellular level by clock transcription factors, including Period2 (PER2), Bmal1, Clock and Cry. These transcription factors drive a daily ~24h rhythm in gene expression leading to tissue specific receptor expression optimizing sensitivity to hormones and drugs dependent on the time of day. To synchronize circadian rhythms in the body to the time of day, the brain’s suprachiasmatic nucleus (SCN) translates environmental light information into neuronal and endocrine signals allowing circadian rhythm synchrony. Despite the critical role of circadian rhythms in fertility, it remains unknown how circadian rhythms change within reproductive tissues during pregnancy, and how these adaptations might impact drug efficacy. Monitoring wheel-running patterns in circadian PER2::luciferase (PER2::LUC) reporter mice, we confirmed that pregnancy is associated with reductions of activity and identified a correlation between delayed onset of behavioral activity during late pregnancy and ex vivo SCN PER2::LUC period, whereas no correlation between arcuate nucleus PER2::LUC rhythms was identified. The time of day of peak PER2::LUC expression provides a time-stamp as to the circadian phase of a tissue. Pregnancy impacted circadian synchrony in the reproductive axis, with the most dramatic change within the uterus. To understand how circadian rhythms responded to input during pregnancy, we performed a pharmacology study and found that circadian rhythm generation in the uterus responded differentially to hormones regulating pregnancy and labor depending on gestational age and the time of day of drug administration. To test for functional changes in uterine contraction capacity, we recorded ex vivo uterine contractions. Our preliminary data reveal a circadian change in uterine function in the mouse, which impacted labor regulating drug efficacy depending on the time of day. Together our data show that pregnancy is associated with behavioral changes in locomotor activity patterns, as well as adaptations in phase-relationships in reproductive tissues. Our chrono-pharmacology study indicates that a better understanding of labor-regulating drug efficacy can potentially allow increased efficacy of currently used drugs in the clinic to both induce labor as well as halt preterm labor.
机译:分子和行为计时由时钟转录因子所示的细胞水平所示的昼夜水平调节,包括期间2(PER2),BMAL1,时钟和哭。这些转录因子在基因表达中驱动每日〜24h节奏,导致组织特异性受体表达,优化对依赖于一天中的激素和药物的敏感性。为了将昼夜节律在身体中同步到一天中的时间,大脑的基本核(SCN)将环境光信息转化为神经元和内分泌信号,允许昼夜节律同步。尽管昼夜节律在生育的关键作用,但它仍然未知昼夜节律在怀孕期间的生殖组织内变化,以及这些适应如何影响药物效能。监测昼夜百分点的驾驶模式:: luciferase(per2 :: luc)记者小鼠,我们证实怀孕与活动的减少有关,并确定了怀孕后期行为活动的延迟发作与exvivo scn per2 :: Luc时段,而鉴定了弓形核的弓形核与LUC节奏之间的相关性。峰值Per2 :: Luc表达式的时间提供了一个组织的昼夜阶段的时戳。怀孕受影响的生殖轴的昼夜同步,子宫内最戏剧性的变化。为了了解昼夜节律在怀孕期间对输入的反应,我们进行了药理学研究,发现子宫中的昼夜节律生成差异地对调节妊娠和劳动的激素,根据孕龄和药物管理的日期。为了测试子宫收缩能力的功能变化,我们记录了前体内子宫收缩。我们的初步数据揭示了鼠标中子宫功能的昼夜节律变化,这会影响劳动力调节药物功效,这取决于一天的时间。我们的数据一起表明,怀孕与运动活动模式的行为变化有关,以及生殖组织中相位关系中的适应。我们的计时药学研究表明,更好地了解劳动调节药物疗效可能会允许目前使用的药物在临床中提高诊所的疗效,以促使劳动力以及停止早产劳动。

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