Epigallocatechin Gallate Mitigates the Methamphetamine-Induced Striatal Dopamine Terminal Toxicity by Preventing Oxidative Stress in the Mouse Brain

被引:0
作者
Allen L. Pan
Ermal Hasalliu
Manjola Hasalliu
Jesus A. Angulo
机构
[1] Hunter College,Department of Biological Sciences
[2] The City University of New York,Biochemistry Program, the Graduate Center
来源
Neurotoxicity Research | 2020年 / 37卷
关键词
Epigallocatechin gallate; Methamphetamine; Striatum; Toxicity; Oxidative stress; Neuroprotection;
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学科分类号
摘要
Methamphetamine (METH) is a popular psychostimulant due to its long-lasting effects and inexpensive production. METH intoxication is known to increase oxidative stress leading to neuronal damage. Thus, preventing the METH-induced oxidative stress can potentially mitigate neuronal damage. Previously, our laboratory found that epigallocatechin gallate (EGCG), a strong antioxidant found in green tea, can protect against the METH-induced apoptosis and dopamine terminal toxicity in the striatum of mice. In the present study, we evaluated the anti-oxidative properties of EGCG on the METH-induced oxidative stress using CD-1 mice. First, we demonstrated that mice pretreated with EGCG 30 min prior to the METH injection (30 mg/kg, ip) showed protection against the striatal METH-induced reduction of tyrosine hydroxylase without mitigating hyperthermia. In addition, injecting a single high dose of METH caused the reduction of striatal glutathione peroxidase activity at 24 h after the METH injection. Interestingly, pretreatment with EGCG 30 min prior to the METH injection prevented the METH-induced reduction of glutathione peroxidase activity. Moreover, we utilized Western blots to quantify the glutathione peroxidase 4 protein level in the striatum. The results showed that METH decreased striatal glutathione peroxidase 4 protein level, and the reduction was prevented by EGCG pretreatment. Finally, we observed that the METH-induced increase of striatal catalase and copper/zinc superoxide dismutase protein levels were also attenuated by pretreatment with EGCG. Taken together, our data indicate that EGCG is an effective agent that can be used to mitigate the METH-induced striatal toxicity in the mouse brain.
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页码:883 / 892
页数:9
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  • [1] Açikgöz O(1998)Methamphetamine causes lipid peroxidation and an increase in superoxide dismutase activity in the rat striatum Brain Res 813 200-202
  • [2] Gönenç S(2013)Effect of epigallocatechin-3-gallate on inflammatory mediators release in LPS- induced Parkinson's disease in rats Indian J Exp Biol 52 357-362
  • [3] Kayatekin BM(2013)Methamphetamine decreases levels of glutathione peroxidases 1 and 4 in SH-SY5Y neuronal cells: protective effects of selenium Neurotoxicology. 37 240-246
  • [4] Uysal N(2006)Glutathione peroxidases and redox-regulated transcription factors Biol Chem 387 1329-1335
  • [5] Pekçetin Ç(1998)Free radicals and the pathobiology of brain dopamine systems Neurochem Int 32 117-131
  • [6] Şemin I(1994)Rapid communication: attenuation of methamphetamine-induced neurotoxicity in copper/zinc superoxide dismutase transgenic mice J Neurochem 62 380-383
  • [7] Güre A(2003)Speed kills: cellular and molecular bases of methamphetamine-induced nerve terminal degeneration and neuronal apoptosis FASEB J 17 1775-1788
  • [8] Al-Amri JS(2012)N-acetyl cysteine protects against methamphetamine-induced dopaminergic neurodegeneration via modulation of redox status and autophagy in dopaminergic cells Parkinsons Dis 2012 424285-101
  • [9] Hagras MM(2007)Methamphetamine downregulates peroxiredoxins in rat pheochromocytoma cells Biochem Biophys Res Commun 354 96-2271
  • [10] Mujallid MI(1994)Methamphetamine neurotoxicity involves vacuolation of endocytic organelles and dopamine-dependent intracellular oxidative stress J Neurosci 14 2260-1150