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BMAL1 controls the diurnal rhythm and set point for electrical seizure threshold in mice

机译:BMAL1控制小鼠的昼夜节律和癫痫发作阈值设定点

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摘要

The epilepsies are a heterogeneous group of neurological diseases defined by the occurrence of unprovoked seizures which, in many cases, are correlated with diurnal rhythms. In order to gain insight into the biological mechanisms controlling this phenomenon, we characterized time-of-day effects on electrical seizure threshold in mice. Male C57BL/6J wild-type mice were maintained on a 14/10 h light/dark cycle, from birth until 6 weeks of age for seizure testing. Seizure thresholds were measured using a step-wise paradigm involving a single daily electrical stimulus. Results showed that the current required to elicit both generalized and maximal seizures was significantly higher in mice tested during the dark phase of the diurnal cycle compared to mice tested during the light phase. This rhythm was absent in BMAL1 knockout (KO) mice. BMAL1 KO also exhibited significantly reduced seizure thresholds at all times tested, compared to C57BL/6J mice. Results document a significant influence of time-of-day on electrical seizure threshold in mice and suggest that this effect is under the control of genes that are known to regulate circadian behaviors. Furthermore, low seizure thresholds in BMAL1 KO mice suggest that BMAL1 itself is directly involved in controlling neuronal excitability.
机译:癫痫是一组异质性神经系统疾病,它们由无端发作引起,在许多情况下与昼夜节律有关。为了深入了解控制这种现象的生物学机制,我们对小鼠电性癫痫发作阈值的每日时间特征进行了表征。从出生到6周龄,将雄性C57BL / 6J野生型小鼠维持在14/10 h的光照/黑暗周期中进行癫痫测试。癫痫发作阈值采用涉及每日一次电刺激的逐步范​​式进行测量。结果表明,与昼夜阶段相比,昼夜周期黑暗阶段测试的小鼠诱发全身性癫痫发作和最大癫痫发作所需的电流明显更高。在BMAL1基因敲除(KO)小鼠中没有这种节律。与C57BL / 6J小鼠相比,BMAL1 KO在所有测试时间均表现出明显降低的癫痫发作阈值。结果记录了一天中的时间对小鼠电性癫痫发作阈值的重大影响,并表明该作用受已知调节昼夜节律行为的基因的控制。此外,BMAL1 KO小鼠的癫痫发作阈值低表明BMAL1本身直接参与控制神经元兴奋性。

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