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首页> 外文期刊>Neurochemical research >Morin Attenuates Neurochemical Changes and Increased Oxidative/Nitrergic Stress in Brains of Mice Exposed to Ketamine: Prevention and Reversal of Schizophrenia-Like Symptoms
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Morin Attenuates Neurochemical Changes and Increased Oxidative/Nitrergic Stress in Brains of Mice Exposed to Ketamine: Prevention and Reversal of Schizophrenia-Like Symptoms

机译:Morin衰减了暴露于氯胺酮的小鼠大脑中的神经化学变化和增加的氧化/硝基菌胁迫:预防和逆转精神分裂症样症状

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摘要

Previous studies have revealed that morin (MOR), a neuroactive bioflavonoid, with proven psychotropic and neuroprotective properties reduced schizophrenic-like behaviors in mice. This study further evaluated the ability of MOR to prevent and reverse ketamine-induced schizophrenic-like behaviors and the underlying neurochemical changes and increased oxidative/nitrergic stress in mice. In the preventive protocol, mice received intraperitoneal injection of MOR (100?mg/kg), reference antipsychotic drugs [haloperidol (1?mg/kg), risperidone (0.5?mg/kg)], or saline daily for 14 consecutive days prior to i.p. injection of ketamine (KET) (20?mg/kg/day) from the 8th to the 14th day. In the reversal protocol, the animals received KET or saline for 14?days prior to MOR, haloperidol, risperidone, or saline treatments. Schizophrenic-like behaviors: positive (open-field test), negative (social-interaction test) and cognitive (Y-maze test) symptoms were evaluated. Thereafter, the brain levels of dopamine, glutamate, 5-hydroxytryptamine and acetyl-cholinesterase, as well as biomarkers of oxidative/nitrergic stress were measured in the striatum, prefrontal-cortex (PFC) and hippocampus (HC). Morin prevented and reversed KET-induced hyperlocomotion, social and cognitive deficits. Also, MOR or risperidone attenuated altered dopaminergic, glutamatergic, 5-hydroxytryptaminergic and cholinergic neurotransmissions in brain region-dependent manner. The increased malondialdehyde and nitrite levels accompanied by decreased glutathione concentrations in the striatum, PFC and HC in KET-treated mice were significantly attenuated by MOR or risperidone. Taken together, these findings suggest that the anti-schizophrenic-like activity of MOR may be mediated via mechanisms related to attenuation of neurochemical changes?and oxidative/nitrergic alterations in mice.
机译:以前的研究表明,Morin(Mor)是一种神经活性生物鳞状类,经过验证的精神病药和神经保护性能降低了小鼠的精神分裂症状行为。该研究进一步评估了MOR以预防和逆转氯胺酮诱导的精神性化学的能力和小鼠中氧化/氮的胁迫增加的能力。在预防方案中,小鼠接受腹膜内注射MOR(100?Mg / kg),参考抗精神病药物[氟哌啶醇(1×mg / kg),risperidone(0.5×mg / kg)],或连续14天之前每天服药到IP.从第8天到第14天注射氯胺酮(ket)(20?mg / kg /天)。在反转方案中,动物在摩尔,氟哌啶醇,立酮或盐水处理之前14天接受KET或盐水。精神分裂性的行为:阳性(开放场测试),阴性(社会互动试验)和认知(Y-MAZE试验)评估症状。此后,在纹状体,前额叶 - 皮质 - 皮质(PFC)和海马(HC)中测量多巴胺,谷氨酸,5-羟基 - 苯胺和乙酰 - 胆碱酯酶以及氧化/氮的生物标志物的脑水平。 Morin预防和逆转激生疫苗,社会和认知赤霉素。此外,Mor或Risperidone以脑区依赖性方式减弱了改变的多巴胺能,谷氨酸,谷氨酸,5-羟基对氨基能和胆碱能神经递血。通过Mor或Risperidone显着减弱了纹状体,PFC和HC伴有晶状体,PFC和HC下降的羟基醛和亚硝酸盐水平增加。这些研究结果表明,MOR的抗精神分裂症样活性可以通过与神经化学变化的衰减相关的机制来介导的机制?和小鼠中的氧化/氮化改变。

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