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雄性大鼠中海马区与β淀粉样肽(25-35)诱导的记忆障碍相关的神经发生和形态神经改变。

Neurogenesis and morphological-neural alterations closely related to amyloid β-peptide (25-35)-induced memory impairment in male rats.

机构信息

Laboratorio de Neurofarmacología edificio 105 C - FCQ, BUAP, Puebla, Mexico.

Laboratorio de Neuropsiquiatría IF, BUAP, Puebla, Mexico.

出版信息

Neuropeptides. 2018 Feb;67:9-19. doi: 10.1016/j.npep.2017.11.001. Epub 2017 Nov 6.

DOI:10.1016/j.npep.2017.11.001
PMID:29129405
Abstract

Memory impairment by the Amyloid-β 25-35 (Aβ) peptide in animal models has provided an understanding of the causes behind the similar deterioration that occurs in Alzheimer's disease. However, it is uncertain if a decrease of dendritic spines and neurogenesis conduces to cognitive impairment by an impairment in the retrieval of stored memory. The aim of this study was to evaluate the consequences of impairment on spatial memory caused by the administration of the Aβ peptide in the hippocampus, which is associated whit morphological changes and neurogenesis in the dentate gyrus (DG). The vehicle or Aβ peptide (0.1μg/μL) were bilaterally administered in the CA1 subfield of the rat hippocampus. The animals were tested for spatial learning and memory in the Morris Water Maze. In the day's 11, 18 and 32 after administration of the Aβ peptide were examined the morphological changes in the DG using a Golgi-Cox stain. In the day 32, the neurogenesis was evaluated by the immunoreactivity to 5-bromo-2'-deoxyuridine (BrdU; 100mg/kg, i.p.) that corresponding to cellular proliferation post damage, the neuronal specific nuclear protein (NeuN) and doublecortin (DCX). This study found a memory retrieval impairment occurring at day 17, a cognitive deficit which had increased significantly at day 31 after the administration of Aβ peptide. These results are related to morphological changes in the granular cells of the DG, such as a shorter dendritic length and a decrease in the number of dendritic spines. In neurogenesis, the total number of cells positive to BrdU, NeuN and DCX in the hippocampal granule cell layer was found to have declined in animals treated with Aβ. The results suggest that the Aβ peptide impairs memory retrieval by decreasing the number of dendritic spines and altering neurogenesis in the DG.

摘要

淀粉样β 25-35(Aβ)肽在动物模型中的记忆损伤提供了对阿尔茨海默病中类似损伤原因的理解。然而,尚不确定树突棘和神经发生的减少是否会因存储记忆的检索受损而导致认知障碍。本研究旨在评估在海马体中给予 Aβ 肽后对空间记忆造成的损害对空间记忆的后果,这与齿状回(DG)中的形态变化和神经发生有关。将载体或 Aβ 肽(0.1μg/μL)双侧给予大鼠海马 CA1 亚区。在 Morris 水迷宫中测试动物的空间学习和记忆。在给予 Aβ 肽后的第 11、18 和 32 天,使用高尔基-考克斯染色检查 DG 中的形态变化。在第 32 天,通过对 5-溴-2'-脱氧尿苷(BrdU;100mg/kg,ip)的免疫反应性评估神经发生,BrdU 对应于损伤后的细胞增殖,神经元特异性核蛋白(NeuN)和双皮质素(DCX)。本研究发现,在第 17 天出现记忆检索障碍,在给予 Aβ 肽后第 31 天出现认知缺陷,且显著增加。这些结果与 DG 颗粒细胞的形态变化有关,例如树突长度缩短和树突棘数量减少。在神经发生中,在接受 Aβ 处理的动物中,海马颗粒细胞层中 BrdU、NeuN 和 DCX 阳性细胞的总数减少。结果表明,Aβ 肽通过减少树突棘数量和改变 DG 中的神经发生来损害记忆检索。

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