The molecular mechanism underlying the role of hippocampal hilar interneuron degeneration in temporal lobe epilepsy (TLE) remains unclear. Especially, very few studies have focused on the role of neuronal nitric oxide synthase (nNOS, encoded by Nos1) containing hilar interneurons in TLE. In the present study, Nos1 conditional knockout mice were constructed, and we found that selective deletion of Nos1 in hilar interneurons rather than dentate granular cells (DGCs) triggered epileptogenesis. The level of nNOS was downregulated in patients and mice with TLE. Nos1 deletion led to excessive epilepsy-like excitatory input circuit formation and hyperexcitation of DGCs. Replenishment of hilar nNOS protein blocked epileptogenic development and memory impairment in pilocarpine-induced TLE mice. Moreover, chronic treatment with DETA/NONOate, a slowly released exogenous nitric oxide (NO) donor, prevented aberrant neural circuits of DGCs and the consequent epileptogenesis without acute antiseizure effects. Therefore, we concluded that NO donor therapy may be a novel anti-epileptogenesis strategy, different from existing antiseizure medications (ASMs), for curing TLE.
A novel anti-epileptogenesis strategy of temporal lobe epilepsy based on nitric oxide donor.
基于一氧化氮供体的颞叶癫痫新型抗癫痫发生策略
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作者:Zhu Xian-Hui, Zhou Ya-Ping, Zhang Qiao, Zhu Ming-Yi, Song Xiao-Wei, Li Jun, Chen Jiang, Shi Yun, Sun Kang-Jian, Zhang Yong-Jie, Zhang Jing, Xia Tian, Huang Bao-Sheng, Meng Fan, Zhou Qi-Gang
| 期刊: | EMBO Molecular Medicine | 影响因子: | 8.300 |
| 时间: | 2025 | 起止号: | 2025 Jan;17(1):85-111 |
| doi: | 10.1038/s44321-024-00168-1 | 研究方向: | 其它 |
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