4.7 Article

Ursolic Acid Protects Neurons in Temporal Lobe Epilepsy and Cognitive Impairment by Repressing Inflammation and Oxidation

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FRONTIERS IN PHARMACOLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2022.877898

关键词

temporal lobe epilepsy; cognitive impairment; ursolic acid; anti-inflammatory; antioxidant; neuroprotective

资金

  1. National Natural Science Foundation of Ningxia [2018AAC02018, 2022AAC02034]
  2. National Natural Science Foundation of China [31660267, 32070930, 82160497, 81760359]
  3. Ningxia Hui Autonomous Region 13th Five-Year Plan Major Science and Technology Projects [2016BZ07]
  4. Key R&D Plan Project of Ningxia Autonomous Region [2020BFG02012]
  5. First-Class Discipline Construction Founded Project of Ningxia Medical University [NXYLXK 2017A05]
  6. School of Clinical Medicine [NXYLXK 2017A05]
  7. Science Research Project of Ningxia's Colleges [NGY2020043]
  8. Light of the West Talent Training Programme of the Chinese Academy of Sciences
  9. Ningxia Youth Top Talent training Project, Innovation and Entrepreneurship Projects for Returnees from Studying Abroad

向作者/读者索取更多资源

UA treatment alleviates seizure behavior and cognitive impairment induced by epilepsy, rescues hippocampal neuronal damage and aberrant neurogenesis, remarkably suppresses SE-induced neuroinflammation, reduces oxidative stress damage and mitochondrial dysfunction caused by SE, and attenuates GABA interneuron loss.
Temporal lobe epilepsy (TLE) is characterized as an impaired ability of learning and memory with periodic and unpredictable seizures. Status epilepticus (SE) is one of the main causes of TLE. Neuroinflammation and oxidative stress are directly involved in epileptogenesis and neurodegeneration, promoting chronic epilepsy and cognitive deficit. Previous studies have shown that ursolic acid (UA) represses inflammation and oxidative stress, contributing to neuroprotection. Herein, we demonstrated that UA treatment alleviated seizure behavior and cognitive impairment induced by epilepsy. Moreover, UA treatment rescued hippocampal neuronal damage, aberrant neurogenesis, and ectopic migration, which are commonly accompanied by epilepsy occurrence. Our study also demonstrated that UA treatment remarkably suppressed the SE-induced neuroinflammation, evidenced by activated microglial cells and decreased inflammation factors, including TNF-alpha and IL-1 beta. Likewise, the expression levels of oxidative stress damage markers and oxidative phosphorylation (OXPHOS) enzyme complexes of mitochondria were also remarkably downregulated following the UA treatment, suggesting that UA suppressed the damage caused by the high oxidative stress and the defect mitochondrial function induced by SE. Furthermore, UA treatment attenuated GABAergic interneuron loss. In summary, our study clarified the notable anti-seizure and neuroprotective properties of UA in pilocarpine-induced epileptic rats, which is mainly achieved by abilities of anti-inflammation and anti-oxidation. Our study indicates the potential advantage of UA application in ameliorating epileptic sequelae.

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