4.5 Article

Metabolic, Phenotypic, and Neuropathological Characterization of the Tg4-42 Mouse Model for Alzheimer's Disease

期刊

JOURNAL OF ALZHEIMERS DISEASE
卷 80, 期 3, 页码 1151-1168

出版社

IOS PRESS
DOI: 10.3233/JAD-201204

关键词

Alzheimer's disease; behavior; biomarkers; neuronal degeneration; neuroinflammation; nuclear magnetic resonance

资金

  1. Austrian Research Promotion Agency [FFG: 856804, FFG: 864690, 870454]
  2. QPS Austria GmbH
  3. Austrian Science Foundation [P28854, I3792, DK-MCD W1226]
  4. Integrative Metabolism Research Center Graz
  5. Austrian infrastructure program 2016/2017
  6. Styrian government (Zukunftsfonds)
  7. BioTechMed/Graz

向作者/读者索取更多资源

The Tg4-42 mouse model is valuable for preclinical AD research, providing insights into pathological features of AD and revealing changes in metabolic biomarkers for future studies or drug development.
Background: Preclinical Alzheimer's disease (AD) research strongly depends on transgenic mouse models that display major symptoms of the disease. Although several AD mouse models have been developed representing relevant pathologies, only a fraction of available mouse models, like the Tg4-42 mouse model, display hippocampal atrophy caused by the death of neurons as the key feature of AD. The Tg4-42 mouse model is therefore very valuable for use in preclinical research. Furthermore, metabolic biomarkers which have the potential to detect biochemical changes, are crucial to gain deeper insights into the pathways, the underlying pathological mechanisms and disease progression. Objective: We thus performed an in-depth characterization of Tg4-42 mice by using an integrated approach to analyze alterations of complex biological networks in this AD in vivo model. Methods: Therefore, untargeted NMR-based metabolomic phenotyping was combined with behavConclusion: Our study provides a comprehensive characterization of the Tg4-42 mouse model which could lead to a deeper understanding of pathological features of AD. Additionally this study reveals changes in metabolic biomarker which set the base for future preclinical studies or drug development.ioral tests and immunohistological and biochemical analyses. Results: Our in vivo experiments demonstrate a loss of body weight increase in homozygous Tg4-42 mice over time as well as severe impaired learning behavior and memory deficits in the Morris water maze behavioral test. Furthermore, we found significantly altered metabolites in two different brain regions and metabolic changes of the glutamate/4-aminobutyrate-glutamine axis. Based on these results, downstream effects were analyzed showing increased A beta(42) levels, increased neuroinflammation as indicated by increased astro- and microgliosis as well as neuronal degeneration and neuronal loss in homozygous Tg4-42 mice. Conclusion: Our study provides a comprehensive characterization of the Tg4-42 mouse model which could lead to a deeper understanding of pathological features of AD. Additionally this study reveals changes in metabolic biomarker which set the base for future preclinical studies or drug development.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.5
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据