不同脂多糖剂量对实验性阿尔茨海默病模型中短期和长期空间记忆及海马形态的影响

Khulud Abdullah Bahaidrah, N. A. Alzahrani, Rahaf Saeed Aldhahri, Rasha A Mansouri, B. Alghamdi
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引用次数: 1

摘要

背景:阿尔茨海默病(AD)是一种进行性神经退行性疾病,是痴呆的最常见原因。各种动物模型被广泛用于研究其潜在机制,包括脂多糖(LPS)诱导的神经炎症模型。目的:研究不同剂量(0.25、0.5、0.75 mg/kg) LPS对实验性AD小鼠短时、长时空间记忆和海马形态的影响。材料与方法:24只体重18 ~ 25 g的成年雄性瑞士小鼠(SWR/J)随机分为对照组、0.25 mg/kg LPS组、0.50 mg/kg LPS组和0.75 mg/kg LPS组。各组均用LPS或载药治疗7 d。注射后2 d开始行为学测试(Morris水迷宫6 d, Y迷宫1 d)。在行为程序后,收集组织进行进一步的组织学检查。结果:与对照组相比,所有LPS剂量均引起Y型迷宫和Morris水迷宫大鼠短期和长期空间记忆损伤。此外,海马组织检查显示,0.50 mg/kg和0.75 mg/kg LPS组海马神经元变性,而0.25 mg/kg LPS组海马神经元变性较少。结论:0.75 mg/kg LPS对大鼠早期空间学习记忆和短期记忆的影响大于其他剂量。我们的行为学和组织学结果表明,0.75 mg/kg LPS对LPS诱导的AD模型很有希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Different Lipopolysaccharide Doses on Short- and Long-Term Spatial Memory and Hippocampus Morphology in an Experimental Alzheimer’s Disease Model
Background: Alzheimer’s disease (AD) is a progressive neurodegenerative disease and the most common cause of dementia. Various animal models are widely used to investigate its underlying mechanisms, including lipopolysaccharide (LPS)-induced neuroinflammation models. Aim: In this study, we aimed to investigate the effect of different doses (0.25, 0.5, and 0.75 mg/kg) of LPS on short- and long-term spatial memory and hippocampal morphology in an experimental AD mouse model. Materials and methods: Twenty-four adult male Swiss mice (SWR/J) weighing 18–25 g were divided into four groups: control, 0.25 mg/kg LPS, 0.50 mg/kg LPS, and 0.75 mg/kg LPS. All groups were treated with LPS or vehicle for 7 days. Behavioral tests were started (Morris water maze for 6 days and Y maze for 1 day) on the last 2 days of injections. After the behavioral procedures, tissues were collected for further histological investigations. Result: All LPS doses induced significant short- and long-term spatial memory impairment in both the Y maze and Morris water maze compared with the control group. Furthermore, histological examination of the hippocampus indicated degenerating neurons in both the 0.50 mg/kg and 0.75 mg/kg LPS groups, while the 0.25 mg/kg LPS group showed less degeneration. Conclusion: our results showed that 0.75 mg/kg LPS had a greater impact on early-stage spatial learning memory and short-term memory than other doses. Our behavioral and histological findings suggest 0.75 mg/kg LPS as a promising dose for LPS-induced AD models.
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