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首页> 外文期刊>Archives of pharmacal research >Quercetin along with piperine prevents cognitive dysfunction, oxidative stress and neuro-inflammation associated with mouse model of chronic unpredictable stress
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Quercetin along with piperine prevents cognitive dysfunction, oxidative stress and neuro-inflammation associated with mouse model of chronic unpredictable stress

机译:槲皮素以及哌啶可防止认知功能障碍,氧化应激和与慢性不可预测应力的小鼠模型相关的氧化应激和神经炎症

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摘要

Stress occurs in everyday life and persistence of it causes memory loss. Bioflavonoids like quercetin are reported to have poor bioavailability and limited therapeutic potential against stress induced neurological disorders. Therefore, the present study is an attempt to elucidate the therapeutic potency of combination of quercetin with piperine; a bioavailability enhancer against chronic unpredictable stress (CUS)-induced behavioral and biochemical alterations. Laca mice were subjected to a series of stressful events for a period of 28 days. Quercetin (20, 40 and 80 mg/kg, p.o.), piperine (20 mg/kg, p.o.) and their combinations were administered daily 30 min before CUS procedure. Piracetam (100 mg/kg, i.p.) served as a standard control. CUS caused impaired spatial navigation in Morris water maze test and poor retention in elevated plus maze task. Further, there was significant increase in brain oxidative stress markers and neuro-inflammation (TNF-alpha). This was coupled with marked rise in acetylcholinesterase and serum corticosterone levels. Co-administration of piperine with quercetin significantly elevated their potential to restore these behavioral, biochemical and molecular changes associated with mouse model of CUS. These results suggest that piperine enhances the neuroprotective effects of quercetin against CUS-induced oxidative stress, neuro-inflammation and memory deficits.
机译:压力发生在日常生活中,并且它的持久性导致内存损失。据报道,生物鳞状蛋白如槲皮素,生物利用度差,对应激诱导的神经系统疾病有限的治疗潜力。因此,本研究试图阐明槲皮素与哌啶的组合的治疗效力;一种生物利用度增强剂,反对慢性不可预测的应激(CUS) - 引起的行为和生化改变。将LACA小鼠进行一系列压力事件,为期28天。在CUS过程之前30分钟给予槲皮素(20,40和80mg / kg,p.o.),哌啶(20mg / kg,p.o.)及其组合。 Piracetam(100 mg / kg,i.p.)作为标准控制。 CUS在莫里斯水迷宫试验中造成了障碍的空间导航,并且升高的Plus Maze任务中的滞留差。此外,脑氧化应激标记物和神经炎症(TNF-α)显着增加。这与乙酰胆碱酯酶和血清皮质酮水平的显着升高相结合。哌啶与槲皮素的共同施用显着升高了恢复与CU小鼠模型相关的这些行为,生物化学和分子变化的潜力。这些结果表明,哌啶增强了槲皮素对CUS诱导的氧化应激,神经炎症和记忆缺陷的神经保护作用。

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