Neuroprotective mechanism of low-dose sodium nitrite in oxygen-glucose deprivation model of cerebral ischemic stroke in PC12 cells
Nader Shakib, Mohammad Hassan Khadem Ansari, Pouran Karimi, Yousef Rasmi
Abstract
Nader Shakib, Mohammad Hassan Khadem Ansari, Pouran Karimi, Yousef Rasmi
Abstract
release from the ER in OGD-injured PC12 cells. Moreover, ER stress marker expression and cleaved fragments of caspase-3 and -12 in OGD-injured PC12 cells were decreased after SN treatment. These findings were accompanied by a significant increase in cell viability. It seems that SN exerts a neuroprotective effect at least partially through reduction of ROS-mediated ER stress caused by OGD insult.
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release from the ER in OGD-injured PC12 cells. Moreover, ER stress marker expression and cleaved fragments of caspase-3 and -12 in OGD-injured PC12 cells were decreased after SN treatment. These findings were accompanied by a significant increase in cell viability. It seems that SN exerts a neuroprotective effect at least partially through reduction of ROS-mediated ER stress caused by OGD insult.
Key concepts: Unfolded protein response, Viability assay, Endoplasmic reticulum, Neuroprotection, ATF6, Reactive oxygen species, Chemistry, SH-SY5Y