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水合芦丁对东莨菪碱诱导的BDNF/TrkB/ERK/CREB/Bcl2信号通路缺陷的神经保护特性

Neuroprotective Properties of Rutin Hydrate against Scopolamine-Induced Deficits in BDNF/TrkB/ERK/CREB/Bcl2 Pathways.

作者信息

Sreelatha Inturu, Choi Ga-Young, Lee In-Seo, Inturu Omkaram, Lee Hyun-Sook, Park Yea-Na, Lee Cheol-Won, Yang Inkyou, Maeng Sungho, Park Ji-Ho

机构信息

Department of Gerontology (AgeTech-Service Convergence Major), Graduate School of East-West Medical Science, Kyung Hee University, Yongin 17104, Republic of Korea.

Center for Research Equipment, Korea Basic Science Institute, Cheongju 28119, Republic of Korea.

出版信息

Neurol Int. 2024 Sep 27;16(5):1094-1111. doi: 10.3390/neurolint16050082.

Abstract

: Alzheimer's disease (AD) is an age-related degenerative brain disorder characterized by a progressive decline in cognitive function and memory. This study aimed to evaluate whether rutin hydrate (RH) has neuroprotective effects in an AD-like learning and memory impairment rat model induced by scopolamine (SCO). The rats were administered with RH (100 mg/kg) and SCO (1.5 mg/kg) and underwent behavioral tests, including the Morris water maze test, Y-maze test, and passive avoidance test, to evaluate their learning and memory abilities. Additionally, long-term potentiation (LTP) was induced to observe changes in the field excitatory postsynaptic potential (fEPSP) activity. RH treatment attenuated the SCO-induced shortening of step-through latency in the passive avoidance (PA) test, increased the percentage of alternation in the Y-maze, and increased the time spent in the target zone in the Morris water maze (MWM). Moreover, RH increased the total activity of fEPSP following theta burst stimulation and attenuated the SCO-induced blockade of fEPSP. RH also ameliorated the SCO-induced decrease in the expression levels of the BDNF, TrkB, ERK, CREB, and Bcl-2 proteins and the increase in the Bax protein level in the rat hippocampus. This demonstrates that RH has beneficial neuroprotective effects in the brain, improving learning, memory, and synaptic plasticity in rats. Our results highlight the molecular and cellular mechanisms through which RH exerts its neuroprotective effects in the prevention and treatment of learning and memory deficit disorders. RH could potentially be used as a therapeutic strategy for the restoration of learning and memory function and the prevention of the progression of AD.

摘要

阿尔茨海默病(AD)是一种与年龄相关的退行性脑疾病,其特征是认知功能和记忆力逐渐下降。本研究旨在评估水合芦丁(RH)在东莨菪碱(SCO)诱导的类AD学习和记忆障碍大鼠模型中是否具有神经保护作用。给大鼠施用RH(100mg/kg)和SCO(1.5mg/kg),并进行行为测试,包括莫里斯水迷宫测试、Y迷宫测试和被动回避测试,以评估它们的学习和记忆能力。此外,诱导长时程增强(LTP)以观察场兴奋性突触后电位(fEPSP)活动的变化。RH治疗减弱了SCO诱导的被动回避(PA)测试中穿通潜伏期的缩短,增加了Y迷宫中交替的百分比,并增加了莫里斯水迷宫(MWM)中在目标区域花费的时间。此外,RH增加了theta爆发刺激后fEPSP的总活性,并减弱了SCO诱导的fEPSP阻断。RH还改善了SCO诱导的大鼠海马中BDNF、TrkB、ERK、CREB和Bcl-2蛋白表达水平的降低以及Bax蛋白水平的升高。这表明RH在大脑中具有有益的神经保护作用,可改善大鼠的学习、记忆和突触可塑性。我们的结果突出了RH在预防和治疗学习和记忆缺陷障碍中发挥神经保护作用的分子和细胞机制。RH有可能被用作恢复学习和记忆功能以及预防AD进展的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/492e/11510686/846565c4c343/neurolint-16-00082-g001.jpg

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