Ginsenosides Alleviate the Severity of Febrile Seizures via Targeting Dynamin‐Related Protein 1 to Promote Cortical Adenosine Elevation and Suppress the Cyclic Adenosine Monophosphate Signaling Pathway

神经保护 腺苷 药理学 环磷酸腺苷 医学 癫痫 人参皂甙 腺苷A1受体 腺苷受体 下调和上调 信号转导 代谢物 人参 海马体 受体 运动前神经元活动 MAPK/ERK通路 蛋白激酶B 大脑皮层 化学 不利影响
作者
Y Zhang,Guangyuan Liu,Xuewei Zhao,Liangyu Pan,Qian Wang,Qingning Zhang,Qin Xm,Siruan Chen,Panpan Zhang,Jun Hao,Wen Zhang,Dezhi Kong
出处
期刊:Phytotherapy Research [Wiley]
卷期号:40 (3): 1117-1140
标识
DOI:10.1002/ptr.70196
摘要

Febrile seizure is a common pediatric neurological emergency that may potentially increase the risks of epilepsy and neurodevelopmental disorders. Ginsenosides are the primary active component of ginseng, demonstrating notable neuroprotective effects. However, the effects and mechanisms of Ginsenosides in febrile seizures remain poorly understood. This study aims to investigate the effects and potential molecular targets of Ginsenosides in mitigating febrile seizures and further elucidate its underlying mechanism. Seizure behaviors and EEG recordings were conducted in mice to investigate the effect of Ginsenosides on febrile seizures. Direct targets of Ginsenosides were identified through Thermal Proteome Profiling (TPP), subsequently validated by Surface Plasmon Resonance (SPR), Cellular Thermal Shift Assay (CETSA), and molecular docking. The mechanisms of Ginsenosides targeting Dynamin-related protein 1 (Drp1) in inhibiting febrile seizures were elucidated through proteomic analysis, molecular biology techniques, mitochondrial function assessments, and metabolite profiling. These findings demonstrate that Ginsenosides significantly attenuated febrile seizure severity and reduced the incidence of generalized tonic-clonic seizures (GTCS), showing a superior safety and efficacy profile compared to Ilepcimide. Using the TPP method, we identified and validated Drp1 as a promising direct target for therapeutic intervention in febrile seizures. Mechanistically, Ginsenoside-mediated Drp1 inhibition restored mitochondrial calcium homeostasis, promoting ATP production and elevating region-specific cortical levels of the endogenous anti-seizure metabolite adenosine. Moreover, Ginsenosides upregulated adenosine A1 receptor expression and suppressed the cyclic Adenosine Monophosphate (cAMP) signaling pathway, ultimately exerting anti-seizure effects. In summary, this study reveals that Ginsenosides significantly inhibit febrile seizures by directly targeting Drp1, thereby increasing adenosine levels and suppressing cAMP signaling, effectively suppressing seizures. Our findings demonstrate the potential of Ginsenosides in febrile seizures prevention and highlight Drp1 as a promising therapeutic target, thereby providing novel strategies for identifying targets of bioactive compounds.
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