Reduced Apoptotic Injury by Phenothiazine in Ischemic Stroke through the NOX-Akt/PKC Pathway

Снижение апоптотического повреждения фенотиазином при ишемическом инсульте через путь NOX–Akt/PKC
Fengwu Li, Yuchuan Ding, Longfei Guan, Yanna Tong, Xiaokun Geng, Kenneth Elkin, Changya Peng, Jiamei Shen, Yu Ji, Wenjing Wei
2019-12-15

NOX-Akt/PKC pathwayapocynin (NOX inhibitor)chlorpromazine and promethazine (C+P)ischemic strokephenothiazine
Phenothiazine treatment has been shown to reduce post-stroke ischemic injury, though the underlying mechanism remains unclear. This study sought to confirm the neuroprotective effects of phenothiazines and to explore the role of the NOX (nicotinamide adenine dinucleotide phosphate oxidase)/Akt/PKC (protein kinase C) pathway in cerebral apoptosis. Sprague-Dawley rats underwent middle cerebral artery occlusion (MCAO) for 2 h and were randomly divided into 3 different cohorts: (1) saline, (2) 8 mg/kg chlorpromazine and promethazine (C+P), and (3) 8 mg/kg C+P as well as apocynin (NOX inhibitor). Brain infarct volumes were examined, and cell death/NOX activity was determined by assays. Western blotting was used to assess protein expression of kinase C-δ (PKC-δ), phosphorylated Akt (p-Akt), Bax, Bcl-XL, and uncleaved/cleaved caspase-3. Both C+P and C+P/NOX inhibitor administration yielded a significant reduction in infarct volumes and cell death, while the C+P/NOX inhibitor did not confer further reduction. In both treatment groups, anti-apoptotic Bcl-XL protein expression generally increased, while pro-apoptotic Bax and caspase-3 proteins generally decreased. PKC protein expression was decreased in both treatment groups, demonstrating a further decrease by C+P/NOX inhibitor at 6 and 24 h of reperfusion. The present study confirms C+P-mediated neuroprotection and suggests that the NOX/Akt/PKC pathway is a potential target for efficacious therapy following ischemic stroke.
1
Adding the NOX inhibitor apocynin to C+P (C+P/NOX inhibitor) did not produce further reduction in infarct volume or cell death beyond C+P alone.
2
Administration of 8 mg/kg chlorpromazine and promethazine (C+P) significantly reduced brain infarct volumes after 2 h MCAO in rats.
3
C+P and C+P/NOX inhibitor treatments increased anti-apoptotic Bcl-XL protein expression and decreased pro-apoptotic Bax and caspase-3 expression.
4
C+P treatment significantly reduced cell death following ischemic stroke, as measured by cell death assays.
5
Findings implicate the NOX/Akt/PKC pathway as a potential therapeutic target mediating phenothiazine (C+P) neuroprotection after ischemic stroke.
6
PKC-δ protein expression was decreased by C+P treatment, with C+P/NOX inhibitor producing a further PKC decrease at 6 and 24 hours of reperfusion.

Phenothiazine treatment (chlorpromazine and promethazine) administered to Sprague-Dawley rat brains after middle cerebral artery occlusion (ischemic stroke)

Reduction of cerebral apoptotic injury and related molecular changes mediated by the NOX/Akt/PKC pathway, including effects on infarct volume, cell death, NOX activity, PKC-δ, p-Akt, Bax, Bcl-XL, and caspase-3

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2019-12-15
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Fengwu Li
Yuchuan Ding
Longfei Guan
Yanna Tong
Xiaokun Geng
Kenneth Elkin
Changya Peng
Jiamei Shen
Yu Ji
Wenjing Wei
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