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Comparative Evaluation of Prosopis cineraria (L.) Druce and Its ZnO Nanoparticles on Scopolamine Induced Amnesia

机译:鬼臼丙酸杆菌及其ZnO纳米颗粒对东pol碱诱导的健忘症的比较评价

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摘要

Over recent years, utilization of green synthesized nanomaterials has been widely growing on human body because of its special properties. With the increasing acceptance of nanoparticle approach for various clinical treatments, the biosafety and toxicological effects on the vital organs such as central nervous system, have received more concern. Main focus of this study was to evaluate acute exposure of n-butanol fraction of Prosopis cineraria (L.) Druce hydroethanolic extract (BuPC) and green synthesized zinc oxide nanoparticles of BuPC (ZnOPC) on spatial cognition behavior, and to assess underlying mechanism by estimation of enzymatic antioxidative status along with acetylcholinesterase (AChE) activity in mice brain. Strongest in vitro antioxidant and AChE inhibitory activity exhibiting fraction, BuPC, was examined for inhibition kinetic study by Lineweaver–Burk and Dixon plots. BuPC was further used for fabrication ZnOPC and characterized by UV-visible spectroscopy, Fourier Transform Infrared (FTIR), Field Emission Scanning Electron Microscopy (FESEM), Energy Dispersive X ray (EDX), and Dynamic Light Scattering (DLS) analysis. Old male swiss albino mice were randomly divided into seven groups and treated for 21 days. Subsequently spatial memory was determined by two behavioral models [Elevated plus maze (EPM) and Hebbs William maze (HWM)] and supernatant of brain homogenate was analyzed for enzymatic antioxidant level and AChE inhibitory activity. Zinc content of blood plasma and brain was estimated. Results showed prolonged transfer latency (TL) and time taken to reach reward chamber (TRC) by scopolamine was not ameliorated by the ZnOPC group, whereas BuPC group showed significant reduction in scopolamine induced increase in TL and TRC compared to control and scopolamine treated groups. ZnOPC alleviated enzymatic antioxidant activity and AChE as compared to donepezil and BuPC treated groups. Study concludes that ZnOPC attenuated spatial learning and memory by increase in oxidative stress and decrease in AChE activity at both dose levels. Our results suggest that BuPC exhibited a strong neuroprotective effect on cognitive deficit mice and it may be employed as a strong substance for the treatment of dementia whereas the green synthesized ZnOPC was not proficient to reverse the memory impairment induced by scopolamine.
机译:近年来,由于绿色合成纳米材料的特殊性能,绿色合成纳米材料在人体上的使用已广泛增长。随着越来越多的纳米颗粒方法被用于各种临床治疗,对诸如中枢神经系统等重要器官的生物安全性和毒理学作用已引起越来越多的关注。这项研究的主要重点是评估Prosopis cineraria(L.)Druce氢乙醇提取物(BuPC)和BuPC绿色合成的氧化锌纳米颗粒(ZnOPC)的正丁醇部分对空间认知行为的急性暴露,并通过以下方法评估其潜在机制:小鼠脑中酶抗氧化状态以及乙酰胆碱酯酶(AChE)活性的估计。通过Lineweaver–Burk和Dixon图对抑制动力学研究进行了检验,显示出最强的体外抗氧化剂和AChE抑制活性部分BuPC。 BuPC还被用于制造ZnOPC,并通过紫外可见光谱,傅立叶变换红外(FTIR),场发射扫描电子显微镜(FESEM),能量色散X射线(EDX)和动态光散射(DLS)分析进行了表征。将老的瑞士白化病雄性小鼠随机分为7组,治疗21天。随后,通过两种行为模型[高架迷宫(EPM)和赫布斯威廉迷宫(HWM)]确定空间记忆,并分析脑匀浆的上清液的酶促抗氧化剂水平和AChE抑制活性。估计血浆和大脑中的锌含量。结果显示,ZnOPC组并未改善东pol碱延长的转移潜伏期(TL)和东reward碱到达奖励室(TRC)所需的时间,而与对照组和东碱治疗组相比,BuPC组显示东pol碱引起的TL和TRC的增加显着减少。与多奈哌齐和BuPC处理组相比,ZnOPC减轻了酶抗氧化活性和AChE。研究得出结论,在两个剂量水平下,ZnOPC都会通过增加氧化应激和降低AChE活性而减弱空间学习和记忆能力。我们的结果表明,BuPC对认知缺陷小鼠表现出强大的神经保护作用,并且可以用作治疗痴呆的强力物质,而绿色合成的ZnOPC不能有效逆转东pol碱引起的记忆障碍。

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