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首页> 外文期刊>Frontiers in Cellular Neuroscience >Anticonvulsant Effect of Time-Restricted Feeding in a Pilocarpine-Induced Seizure Model: Metabolic and Epigenetic Implications
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Anticonvulsant Effect of Time-Restricted Feeding in a Pilocarpine-Induced Seizure Model: Metabolic and Epigenetic Implications

机译:毛果芸香碱诱发癫痫发作模型中限时进食的抗惊厥作用:代谢和表观遗传学意义。

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摘要

A new generation of antiepileptic drugs has emerged; however, one-third of epilepsy patients do not properly respond to pharmacological treatments. The purpose of the present study was to investigate whether time-restricted feeding (TRF) has an anticonvulsant effect and whether this restrictive diet promotes changes in energy metabolism and epigenetic modifications in a pilocarpine-induced seizure model. To resolve our hypothesis, one group of rats had free access to food and water ad libitum (AL) and a second group underwent a TRF schedule. We used the lithium-pilocarpine model to induce status epilepticus (SE), and behavioral seizure monitoring was analyzed. Additionally, an electroencephalography (EEG) recording was performed to verify the effect of TRF on cortical electrical activity after a pilocarpine injection. For biochemical analysis, animals were sacrificed 24 h after SE and hippocampal homogenates were used to evaluate the proteins related to metabolism and chromatin structure. Our results showed that TRF had an anticonvulsant effect as measured by the prolonged latency of forelimb clonus seizure, a decrease in the seizure severity score and fewer animals reaching SE. Additionally, the power of the late phase EEG recordings in the AL group was significantly higher than the TRF group. Moreover, we found that TRF is capable of inducing alterations in signaling pathways that regulate energy metabolism, including an increase in the phosphorylation of AMP dependent kinase (AMPK) and a decrease in the phosphorylation of Akt kinase. Furthermore, we found that TRF was able to significantly increase the beta hydroxybutyrate (β-HB) concentration, an endogenous inhibitor of histone deacetylases (HDACs). Finally, we found a significant decrease in HDAC activity as well as an increase in acetylation on histone 3 (H3) in hippocampal homogenates from the TRF group. These findings suggest that alterations in energy metabolism and the increase in β-HB mediated by TRF may inhibit HDAC activity, thus increasing histone acetylation and producing changes in the chromatin structure, which likely facilitates the transcription of a subset of genes that confer anticonvulsant activity.
机译:出现了新一代的抗癫痫药。然而,三分之一的癫痫患者对药理学治疗反应不佳。本研究的目的是调查限时进食(TRF)是否具有抗惊厥作用,以及这种限制性饮食是否在毛果芸香碱诱发的癫痫发作模型中促进能量代谢变化和表观遗传修饰。为了解决我们的假设,一组大鼠可自由享用食物和水(AL),另一组接受TRF时间表。我们使用锂-毛果芸香碱模型诱发癫痫持续状态(SE),并分析了行为癫痫发作监测。另外,进行了脑电图(EEG)记录,以验证毛发芸香碱注射后TRF对皮层电活动的影响。为了进行生化分析,在SE后24小时处死动物,并使用海马匀浆评估与代谢和染色质结构相关的蛋白质。我们的研究结果表明,TRF具有抗惊厥作用,这可通过前肢阵挛性癫痫发作的潜伏期延长,癫痫发作严重程度评分降低和达到SE的动物减少来衡量。此外,AL组晚期EEG记录的功率明显高于TRF组。此外,我们发现TRF能够诱导调节能量代谢的信号传导途径发生变化,包括AMP依赖激酶(AMPK)磷酸化的增加和Akt激酶磷酸化的减少。此外,我们发现TRF能够显着增加β-羟丁酸酯(β-HB)的浓度,后者是组蛋白脱乙酰基酶(HDACs)的内源性抑制剂。最后,我们发现TRF组海马匀浆中HDAC活性显着降低以及组蛋白3(H3)乙酰化增加。这些发现表明,能量代谢的改变和TRF介导的β-HB的增加可能会抑制HDAC活性,从而增加组蛋白乙酰化并导致染色质结构发生变化,这可能有助于赋予抗惊厥活性的基因子集的转录。

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