Neural Regeneration Research (Jan 2015)
Curcumin pretreatment and post-treatment both improve the antioxidative ability of neurons with oxygen-glucose deprivation
- Jing-xian Wu,
- Lu-yu Zhang,
- Yan-lin Chen,
- Shan-shan Yu,
- Yong Zhao,
- Jing Zhao
Affiliations
- Jing-xian Wu
- Lu-yu Zhang
- Yan-lin Chen
- Shan-shan Yu
- Yong Zhao
- Jing Zhao
- DOI
- https://doi.org/10.4103/1673-5374.153700
- Journal volume & issue
-
Vol. 10,
no. 3
pp. 481 – 489
Abstract
Recent studies have shown that induced expression of endogenous antioxidative enzymes thr-ough activation of the antioxidant response element/nuclear factor erythroid 2-related factor 2 (Nrf2) pathway may be a neuroprotective strategy. In this study, rat cerebral cortical neurons cultured in vitro were pretreated with 10 μM curcumin or post-treated with 5 μM curcumin, respectively before or after being subjected to oxygen-glucose deprivation and reoxygenation for 24 hours. Both pretreatment and post-treatment resulted in a significant decrease of cell injury as indicated by propidium iodide/Hoechst 33258 staining, a prominent increase of Nrf2 protein expression as indicated by western blot analysis, and a remarkable increase of protein expression and enzyme activity in whole cell lysates of thioredoxin before ischemia, after ischemia, and after reoxygenation. In addition, post-treatment with curcumin inhibited early DNA/RNA oxidation as indicated by immunocytochemistry and increased nuclear Nrf2 protein by inducing nuclear accumulation of Nrf2. These findings suggest that curcumin activates the expression of thioredoxin, an antioxidant protein in the Nrf2 pathway, and protects neurons from death caused by oxygen-glucose deprivation in an in vitro model of ischemia/reperfusion. We speculate that pharmacologic stimulation of antioxidant gene expression may be a promising approach to neuroprotection after cerebral ischemia.
Keywords
- tamoxifen
- Src kinase
- PP2
- trauma
- regeneration
- neuroprotection
- auranofin
- dextromethorphan
- rosiglitazone
- Alzheimer′s disease
- neuroinflammation
- neurodegeneration
- microglia
- astrocytes
- nerve regeneration
- spinal cord
- electroacupuncture therapy
- neural stem cells
- notch signaling pathway
- astrocytes
- inflammation
- survival curve
- proliferation
- differentiation
- real-time quantitative PCR
- western blot assay
- neural regeneration
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- superparamagnetic iron oxide
- magnetic guidance
- bone marrow mesenchymal stem cells
- spinal cord injury
- cell transplantation
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- lumbar puncture
- neural regeneration
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- average combined score
- magnetic resonance imaging
- diffusion tensor imaging
- fractional anisotropy
- apparent diffusion coefficient
- fiber tractography
- neural regeneration
- nerve regeneration
- peripheral nerve injury
- sciatic nerve
- hypothermia
- blood-nerve barrier
- Evans blue tracer
- neural degeneration
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- polyethyleneimine-polyethylene glycol
- spiral ganglion cells
- X-linked inhibitor of apoptosis protein
- gene therapy
- nanocarrier
- cisplatin
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- ototoxicity
- cochlea
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- ocular hypertension
- JNK3
- retinal ganglion cell
- glaucoma
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- intraocular pressure
- neural regeneration
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- brain injury
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- inflammation
- apoptosis
- cerebral ischemia
- SMAD3
- transforming growth factor β1
- NSFC grant
- neural regeneration
- neural regeneration
- cerebral ischemia
- Chinese herbal formula
- Tneurotrophic factor
- ongluo Jiunao injection
- nerve growth factor receptor
- Xuesai Tong
- neuroprotection
- NSFC grant
- neuroprotection
- neural regeneration
- nerve regeneration
- hippocampus
- dentate gyrus
- lipid peroxidation
- type 1 diabetes
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- neurons
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- acupuncture
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- immunohistochemistry
- western blot assay
- Notch1
- Hes1
- rats
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- neural stem cells
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- transcranial direct current stimulation
- visuomotor coordination
- task difficulty
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- paraquat
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- endoplasmic reticulum stress
- apoptosis
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- caspase-3
- hippocampus
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- electrophysiology
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- neural regeneration
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- curcumin
- ischemia/reperfusion injury
- oxidative stress
- primary cell culture
- cortical neurons
- oxygen-glucose deprivation
- pretreatment
- post-treatment
- NSFC grant
- neural regeneration