Neuroprotective Effects of Ethanol Extract Polyscias guilfoylei (EEPG) Against Glutamate Induced Neurotoxicity in HT22 Cells

Oxidative stress induced by glutamate is a significant contributor to neuronal cell damage and can lead to neurodegenerative diseases such as Alzheimer's, Huntington's, and ischemic brain injury. At the cellular level, oxidative stress increases Ca ion influx and reactive oxygen species (R...

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Veröffentlicht in:International journal of molecular sciences 2024-11, Vol.25 (22), p.12153
Hauptverfasser: Nguyen, Qui Ngoc Sang, Yoo, Ki-Yeon, Pham, Thi Thu Trang, Selvaraj, Baskar, Vu, Huong Thuy, Le, Tam Thi, Lee, Heesu, Tran, Quang Luc, Thuong, Phuong Thien, Pae, Ae Nim, Jung, Sang Hoon, Lee, Jae Wook
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Sprache:eng
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Zusammenfassung:Oxidative stress induced by glutamate is a significant contributor to neuronal cell damage and can lead to neurodegenerative diseases such as Alzheimer's, Huntington's, and ischemic brain injury. At the cellular level, oxidative stress increases Ca ion influx and reactive oxygen species (ROS), which activate the MAPK signaling pathway. Additionally, the generation of ROS causes mitochondrial dysfunction, triggering apoptosis by promoting the translocation of AIF to the nucleus from the mitochondria. The neuroprotective potential of has not yet been reported. Therefore, in this study, the ethanol extract of (EEPG) was examined for its protective effect against oxidative cell damage caused by glutamate in neuronal cells. EEPG treatment increased the viability of HT22 cells exposed to high concentrations of glutamate. Cellular Ca ion influx and ROS generation decreased with EEPG treatment in glutamate-treated HT22 cells. EEPG treatment inhibited MAPK activation and AIF nuclear translocation. In an in vivo study, EEPG attenuated brain cell death in an ischemic brain injury rat model. This study demonstrates the potential therapeutic effects of in the treatment of ischemic brain injury.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms252212153