Paradoxical attenuation of early amyloid-induced cognitive impairment and synaptic plasticity in an aged APP/Tau bigenic rat model.

IF 6.2 2区 医学 Q1 NEUROSCIENCES Acta Neuropathologica Communications Pub Date : 2024-12-20 DOI:10.1186/s40478-024-01901-0
Joshua T Emmerson, Sonia Do Carmo, Agustina Lavagna, Chunwei Huang, Tak Pan Wong, Julio C Martinez-Trujillo, A Claudio Cuello
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Abstract

The combination of amyloid beta and tau pathologies leads to tau-mediated neurodegeneration in Alzheimer's disease. However, the relative contributions of amyloid beta and tau peptide accumulation to the manifestation of the pathological phenotype in the early stages, before the overt deposition of plaques and tangles, are still unclear. We investigated the longitudinal pathological effects of combining human-like amyloidosis and tauopathy in a novel transgenic rat model, coded McGill-R-APPxhTau. We compared the effects of individual and combined amyloidosis and tauopathy in transgenic rats by assessing the spatiotemporal progression of Alzheimer's-like amyloid and tau pathologies using biochemical and immunohistochemical methods. Extensive behavioral testing for learning and memory was also conducted to evaluate cognitive decline. Additionally, we investigated brain inflammation, neuronal cell loss, as well as synaptic plasticity through acute brain slice electrophysiological recordings and Western blotting. Evaluation of Alzheimer's-like amyloidosis and tauopathy, at the initial stages, unexpectedly revealed that the combination of amyloid pathology with the initial increment in phosphorylated tau exerted a paradoxical corrective effect on amyloid-induced cognitive impairments and led to a compensatory-like restoration of synaptic plasticity as revealed by electrophysiological evidence, compared to monogenic transgenic rats with amyloidosis or tauopathy. We discovered elevated CREB phosphorylation and increased expression of postsynaptic proteins as a tentative explanation for the improved hippocampal synaptic plasticity. However, this tau-induced protective effect on synaptic function was transient. As anticipated, at more advanced stages, the APPxhTau bigenic rats exhibited aggravated tau and amyloid pathologies, cognitive decline, increased neuroinflammation, and tau-driven neuronal loss compared to monogenic rat models of Alzheimer's-like amyloid and tau pathologies. The present findings propose that the early accumulation of phosphorylated tau may have a transient protective impact on the evolving amyloid pathology-derived synaptic impairments.

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老年APP/Tau基因大鼠模型中早期淀粉样蛋白诱导的认知障碍和突触可塑性的矛盾衰减。
淀粉样蛋白和tau病理的结合导致阿尔茨海默病中tau介导的神经变性。然而,在斑块和缠结明显沉积之前的早期阶段,β -淀粉样蛋白和tau肽积累对病理表型表现的相对贡献尚不清楚。我们在编码McGill-R-APPxhTau的新型转基因大鼠模型中研究了人样淀粉样变性和牛头病合并的纵向病理效应。我们通过生化和免疫组织化学方法评估阿尔茨海默样淀粉样蛋白和tau病理的时空进展,比较了转基因大鼠单独和联合淀粉样变性和tau病变的影响。还进行了广泛的学习和记忆行为测试,以评估认知衰退。此外,我们通过急性脑切片电生理记录和Western blotting研究脑炎症、神经元细胞损失和突触可塑性。对阿尔茨海默病样淀粉样变性和tau病的评估,在初始阶段,出乎意料地揭示了淀粉样病变与磷酸化tau的初始增加相结合,对淀粉样变性诱导的认知障碍产生了矛盾的纠正作用,并导致突触可塑性的代偿性恢复,这是电生理学证据显示的,与单基因转基因大鼠的淀粉样变性或tau病相比。我们发现升高的CREB磷酸化和突触后蛋白的表达增加,作为海马突触可塑性改善的初步解释。然而,这种tau诱导的对突触功能的保护作用是短暂的。正如预期的那样,在更晚期,与单基因大鼠阿尔茨海默病样淀粉样蛋白和tau病理模型相比,APPxhTau双基因大鼠表现出加重的tau和淀粉样蛋白病理、认知能力下降、神经炎症增加和tau驱动的神经元丢失。目前的研究结果表明,磷酸化tau蛋白的早期积累可能对淀粉样蛋白病理衍生的突触损伤具有短暂的保护作用。
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来源期刊
Acta Neuropathologica Communications
Acta Neuropathologica Communications Medicine-Pathology and Forensic Medicine
CiteScore
11.20
自引率
2.80%
发文量
162
审稿时长
8 weeks
期刊介绍: "Acta Neuropathologica Communications (ANC)" is a peer-reviewed journal that specializes in the rapid publication of research articles focused on the mechanisms underlying neurological diseases. The journal emphasizes the use of molecular, cellular, and morphological techniques applied to experimental or human tissues to investigate the pathogenesis of neurological disorders. ANC is committed to a fast-track publication process, aiming to publish accepted manuscripts within two months of submission. This expedited timeline is designed to ensure that the latest findings in neuroscience and pathology are disseminated quickly to the scientific community, fostering rapid advancements in the field of neurology and neuroscience. The journal's focus on cutting-edge research and its swift publication schedule make it a valuable resource for researchers, clinicians, and other professionals interested in the study and treatment of neurological conditions.
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