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首页> 外文期刊>Psychopharmacology >Protective effect of potassium 2-(l-hydroxypentyl)-benzoate on hippocampal neurons, synapses and dystrophic axons in APP/PS1 mice
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Protective effect of potassium 2-(l-hydroxypentyl)-benzoate on hippocampal neurons, synapses and dystrophic axons in APP/PS1 mice

机译:钾2-(L-羟基戊基) - 苯甲酸盐对海马神经元,APP / PS1小鼠中的突发剂和营养不良轴突的保护作用

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Rationale As the hub of memory and space, hippocampus is very sensitive to a wide variety of injuries and is one of the earliest brain structures to develop neurodegenerative changes in AD. Previous research has showed a protective effect of potassium 2-(l-hydroxypentyl)-benzoate (PHPB) on cognitive deficits in animal models of AD. However, it is unclear whether this protective effect is associated with hippocampal alterations. Objectives The present study was conducted to evaluate the protective effect of PHPB on hippocampal neurodegenerative changes in middle-aged APP/PS1 mice. Methods Ten-month-old male APP/PS1 transgenic mice and age-matched wild-type mice were randomly divided into three groups. PHPB-treated APP/PS1 group received 30 mg/kg PHPB by oral gavage once daily for 12 weeks. Wild-type group and APP/PS1 group received the same volume of water alone. Twelve weeks later, mice (13-month-old) were tested for in vivo 1H-MRS examination and then sacrificed for subsequent biochemical and pathological examinations using transmission electron microscopy, Golgi staining, immunohistochemistry, and western blotting. Results We found that PHPB treatment significantly improved the micromorphology of hippocampal neurons and subcellular organelles, ameliorated synapse loss and presynaptic axonal dystrophy, increased hippocampal dendritic spine density and dendritic complexity, enhanced the expression of hippocampal synapse-associated proteins, and improved hippocampal metabolism in middle-aged APP/PS1 mice. Conclusions Our study showed for the first time the protective effect of PHPB on hippocampal neurons, synapses, and dystrophic axons in APP/PS1 mice, which to some extent revealed the possible mechanism for its ability to improve cognition in animal models of AD.
机译:理由作为记忆和空间的枢纽,海马对各种伤害非常敏感,是最早的脑结构之一,以发展广告中的神经变性变化。以前的研究表明,钾2-(L-羟基戊基) - 苯甲酸盐(PHPB)对广告的动物模型中的认知缺陷的保护作用。然而,目前尚不清楚这种保护效果是否与海马改变有关。目的进行本研究以评估PHPB对中年APP / PS1小鼠海马神经变化变化的保护作用。方法将十个月大的男性APP / PS1转基因小鼠和年龄匹配的野生型小鼠随机分为三组。 PHPB治疗的APP / PS1组每天一次通过口服饲喂30mg / kg pHPB 12周。野生型组和APP / PS1组仅接收相同的水量。 12周后,小鼠(13个月)在体内1H-MRS检查中测试,然后使用透射电子显微镜,高尔基染色,免疫组织化学和Western印迹进行随后的生化和病理检查。结果发现PHPB治疗显着改善了海马神经元和亚细胞细胞器的微观形态,改善突触损失和突触前轴突型营养不良,增加海马树突脊柱密度和树突复杂性,增强了海马突触相关蛋白的表达,以及改善中间的海马代谢。 - App / PS1小鼠。结论我们的研究表明,APP / PS1小鼠中PHPB对海马神经元,突触和营养不良轴突的保护作用,这在一定程度上揭示了改善广告的动物模型中提高认知能力的可能机制。

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