Altered Levels of Oxidation and Phospholipase C Isozyme Expression in the Brains of Theanine-Administered Rats(Molecular and Cell Biology)
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概要
- 論文の詳細を見る
Previously, we revealed that theanine, a green tea component, induced phospholipase C (PLC)-β1 and -γ1, stress-responsible molecules, in primary cultured rat cerebral cortical neurons, suggesting its protective effect on oxidative stress in neurons. In this study, we investigated whether the same favorable effect occurs in vivo. On the oral administration of theanine (10 mmol (1.74g)/kg, once a day) to rats via gastric intubation for 2 weeks, there was no change in the weight of the body or the cerebral cortex (Cx), cerebellum (Cb), or hippocampus (Hip) in the brain. On assessment of oxidation levels in the brain with thiobarbiturate reactive substances as a marker, the levels were found to be 20% lower in the Cx of theanine-treated rats than in that of control ones. The protein expression levels of PLC-β1 and -γ1 were significantly increased in the Cx on theanine administration and the same tendency was observed in the Cb, but not the Hip. In addition, the protein expression level of PLC-δ1, which plays an opposite role to the other two isozymes, was not affected in any brain regions on theanine administration. Overall, it was demonstrated that theanine is a safe compound and its repeated oral administration reduces oxidation levels in the brain, especially the Cx, by increasing PLC-β1 and -γ1 protein expression, suggesting its favorable effect on the brain in vivo.
- 2008-05-01
著者
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Yasuda Eri
Department Of Environmental Biochemistry Kyoto Pharmaceutical University
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NISHIDA Kentaro
Department of Clinical Pharmacy and Pharmacology, Graduate School of Medical and Dental Sciences, Ka
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Fujimoto Sadaki
Department Of Environmental Biochemistry Kyoto Pharmaceutical University
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Nagasawa Kazuki
Department Of Environmental Biochemistry Kyoto Pharmaceutical University
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Nishida Kentaro
Department Of Clinical Pharmacy And Pharmacology Kagoshima University Graduate School Of Medical And
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Nishida Kentaro
Department Of Environmental Biochemistry Kyoto Pharmaceutical University
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FUJIMOTO Sadaki
Department of Biochemistry I Kyoto Pharmaceutical University:Department of III Kyoto Pharmaceutical University:Department of Pharmaceutical Chemistry II Kyoto Pharmaceutical University
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Nagasawa Kazuki
Department of Environmental Biochemistry, Kyoto Pharmaceutical University
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