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

莫里斯水上航行任务 神经保护 医学 奶油 药理学 海马体 原肌球蛋白受体激酶B 神经科学 长时程增强 高架加迷宫 海马结构 巴恩斯迷宫 内科学 神经营养因子 心理学 化学 受体 生物化学 精神科 转录因子 基因 焦虑 空间学习
作者
Inturu Sreelatha,Ga-Young Choi,In-Seo Lee,I. Omkaram,Hyun‐Sook Lee,Yea-Na Park,Cheol-Won Lee,Inkyou Yang,Sungho Maeng,Ji Ho Park
出处
期刊:Neurology International [PAGEPress (Italy)]
卷期号:16 (5): 1094-1111
标识
DOI:10.3390/neurolint16050082
摘要

Background/Objectives: 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). Methods: 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. Results: 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. Conclusions: 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.
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