Insights From TgF344-AD, a Double Transgenic Rat Model in Alzheimer's Disease Research.

IF 1.9 4区 医学 Q3 PHYSIOLOGY
Physiological research Pub Date : 2025-03-21
A Nataraj, K Blahna, K Ježek
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引用次数: 0

Abstract

Alzheimer's disease (AD), a leading cause of dementia worldwide, is a multifactorial neurodegenerative disorder characterized by amyloid-beta plaques, tauopathy, neuronal loss, neuro-inflammation, brain atrophy, and cognitive deficits. AD manifests as familial early-onset (FAD) with specific gene mutations or sporadic late-onset (LOAD) caused by various genetic and environmental factors. Numerous transgenic rodent models have been developed to understand AD pathology development and progression. The TgF344-AD rat model is a double transgenic model that carries two human gene mutations: APP with the Swedish mutation and PSEN-1 with delta exon 9 mutations. This model exhibits a complete repertoire of AD pathology in an age-dependent manner. This review summarizes multidisciplinary research insights gained from studying TgF344-AD rats in the context of AD pathology. We explore neuropathological findings; electrophysiological assessments revealing disrupted synaptic transmission, reduced spatial coding, network-level dysfunctions, and altered sleep architecture; behavioral studies highlighting impaired spatial memory; alterations in excitatory-inhibitory systems; and molecular and physiological changes in TgF344-AD rats emphasizing their age-related effects. Additionally, the impact of various interventions studied in the model is compiled, underscoring their role in bridging gaps in understanding AD pathogenesis. The TgF344-AD rat model offers significant potential in identifying biomarkers for early detection and therapeutic interventions, providing a robust platform for advancing translational AD research. Key words Alzheimer's disease, Transgenic AD models, TgF344-AD rats, Spatial coding.

阿尔茨海默病研究中的双转基因大鼠模型 TgF344-AD 的启示
阿尔茨海默病(AD)是世界范围内痴呆症的主要原因,是一种多因素神经退行性疾病,其特征是淀粉样蛋白斑块、tau病变、神经元丧失、神经炎症、脑萎缩和认知缺陷。AD表现为家族性早发性(FAD),由多种遗传和环境因素引起的特异性基因突变或散发性晚发性(LOAD)。已经开发了许多转基因啮齿动物模型来了解AD的病理发展和进展。TgF344-AD大鼠模型是携带两种人类基因突变的双转基因模型:APP携带瑞典突变,PSEN-1携带δ外显子9突变。该模型以年龄依赖的方式展示了AD病理的完整曲目。本文综述了在AD病理背景下研究TgF344-AD大鼠所获得的多学科研究见解。我们探讨神经病理结果;电生理评估显示突触传递中断、空间编码减少、网络水平功能障碍和睡眠结构改变;强调空间记忆受损的行为研究;兴奋-抑制系统的改变;以及TgF344-AD大鼠的分子和生理变化,强调其与年龄相关的作用。此外,对模型中研究的各种干预措施的影响进行了汇总,强调了它们在理解AD发病机制方面的作用。TgF344-AD大鼠模型在识别早期检测和治疗干预的生物标志物方面具有重要潜力,为推进转化性AD研究提供了一个强大的平台。关键词阿尔茨海默病,转基因AD模型,TgF344-AD大鼠,空间编码
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来源期刊
Physiological research
Physiological research 医学-生理学
CiteScore
4.00
自引率
4.80%
发文量
108
审稿时长
3 months
期刊介绍: Physiological Research is a peer reviewed Open Access journal that publishes articles on normal and pathological physiology, biochemistry, biophysics, and pharmacology. Authors can submit original, previously unpublished research articles, review articles, rapid or short communications. Instructions for Authors - Respect the instructions carefully when submitting your manuscript. Submitted manuscripts or revised manuscripts that do not follow these Instructions will not be included into the peer-review process. The articles are available in full versions as pdf files beginning with volume 40, 1991. The journal publishes the online Ahead of Print /Pre-Press version of the articles that are searchable in Medline and can be cited.
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