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改善老年Tg2576小鼠和野生型小鼠的认知功能并改变其海马代谢组。

improves cognitive function and alters the hippocampal metabolome of aged Tg2576 and wild-type mice.

作者信息

Matthews Donald G, Khorani Mona, Bobe Gerd, Caruso Maya, Magana Armando Alcazar, Gray Nora E, Quinn Joseph F, Stevens Jan F, Maier Claudia S, Soumyanath Amala

机构信息

Department of Neurology, Oregon Health & Science University, Portland, OR, USA.

Department of Chemistry, Oregon State University, Corvallis, OR, USA.

出版信息

J Alzheimers Dis Rep. 2024 Dec 4;8(1):1611-1638. doi: 10.1177/25424823241296740. eCollection 2024.

Abstract

BACKGROUND

Alzheimer's disease (AD) is a growing public health problem in the aging population, with limited treatment options. We previously reported that herb water extract (CAW) attenuates cognitive decline in murine models of AD and aging.

OBJECTIVE

To explore changes in the hippocampal metabolome associated with CAW's modulation of cognitive function and amyloid-β (Aβ) plaque load in aged Tg2576 and wild-type (WT) mice.

METHODS

We compared cognitive function, hippocampal Aβ plaque burden, and hippocampal metabolite profile in 20-month-old Tg2576 female mice and their WT littermates following 3-5 weeks treatment with CAW (0, 200, or 1000 mg/kg/d p.o.). Cognitive testing included contextual fear response (CFR) and novel object recognition task (NORT). Aβ plaque burden was measured via immunohistochemistry. Metabolomic profiles of mouse hippocampi were obtained using liquid chromatography coupled with high resolution tandem mass spectrometry.

RESULTS

CAW treatment resulted in dose-related improvements in CFR and NORT performance of Tg2576 and WT mice. However, while CFR correlated with neurosignaling and glycosylated ceramide levels, NORT performance correlated with lysophosphatidylcholines and oxidized metabolites, and Aβ accumulation was linked to elevated excitatory and suppressed inhibitory neurotransmission. Only a subset of the metabolite changes induced by CAW in Tg2576 mice represented a reversal of metabolite differences between Tg2576 and WT mice, suggesting the involvement of other pathways in CAW's cognitive effects.

CONCLUSIONS

Mechanisms underlying CAW's cognitive effects extend beyond reversing metabolic effects of Aβ accumulation. The data support the potential use of CAW to manage memory challenges in aged individuals with or without AD.

摘要

背景

阿尔茨海默病(AD)在老年人群中是一个日益严重的公共卫生问题,治疗选择有限。我们之前报道过草药水提取物(CAW)可减轻AD和衰老小鼠模型中的认知衰退。

目的

探讨在老年Tg2576和野生型(WT)小鼠中,与CAW对认知功能和淀粉样β蛋白(Aβ)斑块负荷的调节相关的海马代谢组变化。

方法

我们比较了20月龄Tg2576雌性小鼠及其WT同窝小鼠在接受CAW(0、200或1000 mg/kg/d口服)治疗3 - 5周后的认知功能、海马Aβ斑块负担和海马代谢物谱。认知测试包括情境恐惧反应(CFR)和新物体识别任务(NORT)。通过免疫组织化学测量Aβ斑块负担。使用液相色谱结合高分辨率串联质谱法获得小鼠海马的代谢组谱。

结果

CAW治疗使Tg2576和WT小鼠的CFR和NORT表现得到了与剂量相关的改善。然而,虽然CFR与神经信号传导和糖基化神经酰胺水平相关,但NORT表现与溶血磷脂酰胆碱和氧化代谢物相关,并且Aβ积累与兴奋性神经传递增强和抑制性神经传递受抑制有关。CAW在Tg2576小鼠中诱导的代谢物变化只有一部分代表了Tg2576和WT小鼠之间代谢物差异的逆转,这表明CAW的认知效应涉及其他途径。

结论

CAW认知效应的潜在机制不仅限于逆转Aβ积累的代谢效应。这些数据支持CAW在管理有或无AD的老年人记忆问题方面的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dad1/11863750/bb0c35852b3f/10.1177_25424823241296740-fig1.jpg

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