老年 5xFAD 小鼠的认知能力下降、Aβ 病理学和血脑屏障功能。

IF 5.9 1区 医学 Q1 NEUROSCIENCES
Geetika Nehra, Sasivimon Promsan, Ruedeemars Yubolphan, Wijitra Chumboatong, Pornpun Vivithanaporn, Bryan J Maloney, Anusorn Lungkaphin, Bjoern Bauer, Anika M S Hartz
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引用次数: 0

摘要

背景:阿尔茨海默病患者(AD)会出现不同程度的血脑屏障功能障碍。衰老如何影响 Aβ 病理学、血脑屏障功能和认知能力下降在很大程度上仍是未知数。方法:5xFAD和野生型(WT)小鼠的年龄在9.5个月到15.5个月之间,用莫里斯水迷宫(MWM)进行空间学习和参考记忆测试。行为测试结束后,给小鼠植入急性颅窗并静脉注射荧光标记的右旋糖酐,通过双光子显微镜评估其在大脑中的体内分布。对图像进行处理和分割,以获得血管内强度、血管外强度和血管直径,从而衡量屏障的完整性。小鼠在体内成像后被处死,以分离大脑和血浆来测量Aβ水平。使用广义或累积连锁逻辑混合水平建模和阿凯克信息标准(AICc)选择模型,评估了年龄和基因型对每种检测的影响。配对比较用于确定两组之间的结果差异:结果:与年龄匹配的 WT 小鼠相比,5xFAD 小鼠在 MWM 试验中表现出空间记忆缺陷,且随着年龄的增长而恶化。与年龄匹配的WT小鼠相比,5xFAD小鼠的记忆障碍表现为逃逸潜伏期比WT小鼠高2-3倍,到达平台前的累计距离比WT小鼠高2倍,在水池中使用重复搜索策略的频率比WT小鼠高2倍。rd1等位基因的存在会降低5xFAD小鼠在所有年龄段的MWM表现,但不会改变学习速度或探测试验结果。9.5月龄、15.5月龄的5xFAD小鼠的脑Aβ40和Aβ42水平比9.5月龄的5xFAD小鼠高出两倍(p 40)。图像分析表明,与年龄匹配的 WT 小鼠相比,9.5 个月和 15.5 个月大的 5xFAD 小鼠的血管直径和血管内、外葡聚糖强度没有显著差异。鉴于体内 MP 成像的局限性,需要使用分子量较小的标记物结合先进的成像技术进行进一步研究,以可靠地评估老龄小鼠屏障完整性的细微差别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cognitive decline, Aβ pathology, and blood-brain barrier function in aged 5xFAD mice.

Background: Patients with Alzheimer's disease (AD) develop blood-brain barrier dysfunction to varying degrees. How aging impacts Aβ pathology, blood-brain barrier function, and cognitive decline in AD remains largely unknown. In this study, we used 5xFAD mice to investigate changes in Aβ levels, barrier function, and cognitive decline over time.

Methods: 5xFAD and wild-type (WT) mice were aged between 9.5 and 15.5 months and tested for spatial learning and reference memory with the Morris Water Maze (MWM). After behavior testing, mice were implanted with acute cranial windows and intravenously injected with fluorescent-labeled dextrans to assess their in vivo distribution in the brain by two-photon microscopy. Images were processed and segmented to obtain intravascular intensity, extravascular intensity, and vessel diameters as a measure of barrier integrity. Mice were sacrificed after in vivo imaging to isolate brain and plasma for measuring Aβ levels. The effect of age and genotype were evaluated for each assay using generalized or cumulative-linked logistic mixed-level modeling and model selection by Akaike Information Criterion (AICc). Pairwise comparisons were used to identify outcome differences between the two groups.

Results: 5xFAD mice displayed spatial memory deficits compared to age-matched WT mice in the MWM assay, which worsened with age. Memory impairment was evident in 5xFAD mice by 2-threefold higher escape latencies, twofold greater cumulative distances until they reach the platform, and twice as frequent use of repetitive search strategies in the pool when compared with age-matched WT mice. Presence of the rd1 allele worsened MWM performance in 5xFAD mice at all ages but did not alter the rate of learning or probe trial outcomes. 9.5-month-old 15.5-month-old 5xFAD mice had twofold higher brain Aβ40 and Aβ42 levels (p < 0.001) and 2.5-fold higher (p = 0.007) plasma Aβ40 levels compared to 9.5-month-old 5xFAD mice. Image analysis showed that vessel diameters and intra- and extravascular dextran intensities were not significantly different in 9.5- and 15.5-month-old 5xFAD mice compared to age-matched WT mice.

Conclusion: 5xFAD mice continue to develop spatial memory deficits and increased Aβ brain levels while aging. Given in vivo MP imaging limitations, further investigation with smaller molecular weight markers combined with advanced imaging techniques would be needed to reliably assess subtle differences in barrier integrity in aged mice.

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来源期刊
Fluids and Barriers of the CNS
Fluids and Barriers of the CNS Neuroscience-Developmental Neuroscience
CiteScore
10.70
自引率
8.20%
发文量
94
审稿时长
14 weeks
期刊介绍: "Fluids and Barriers of the CNS" is a scholarly open access journal that specializes in the intricate world of the central nervous system's fluids and barriers, which are pivotal for the health and well-being of the human body. This journal is a peer-reviewed platform that welcomes research manuscripts exploring the full spectrum of CNS fluids and barriers, with a particular focus on their roles in both health and disease. At the heart of this journal's interest is the cerebrospinal fluid (CSF), a vital fluid that circulates within the brain and spinal cord, playing a multifaceted role in the normal functioning of the brain and in various neurological conditions. The journal delves into the composition, circulation, and absorption of CSF, as well as its relationship with the parenchymal interstitial fluid and the neurovascular unit at the blood-brain barrier (BBB).
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