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用于药物发现的基于 Tau 聚集的种系神经元模型。

A seeding-based neuronal model of tau aggregation for use in drug discovery.

机构信息

SERVIER, Institut de Recherches Servier, Croissy-sur-Seine, France.

INSERM, CNRS, Institut Cochin, Université Paris Cité, Paris, France.

出版信息

PLoS One. 2023 Apr 4;18(4):e0283941. doi: 10.1371/journal.pone.0283941. eCollection 2023.

Abstract

Intracellular accumulation of tau protein is a hallmark of Alzheimer's Disease and Progressive Supranuclear Palsy, as well as other neurodegenerative disorders collectively known as tauopathies. Despite our increasing understanding of the mechanisms leading to the initiation and progression of tau pathology, the field still lacks appropriate disease models to facilitate drug discovery. Here, we established a novel and modulatable seeding-based neuronal model of full-length 4R tau accumulation using humanized mouse cortical neurons and seeds from P301S human tau transgenic animals. The model shows specific and consistent formation of intraneuronal insoluble full-length 4R tau inclusions, which are positive for known markers of tau pathology (AT8, PHF-1, MC-1), and creates seeding competent tau. The formation of new inclusions can be prevented by treatment with tau siRNA, providing a robust internal control for use in qualifying the assessment of potential therapeutic candidates aimed at reducing the intracellular pool of tau. In addition, the experimental set up and data analysis techniques used provide consistent results in larger-scale designs that required multiple rounds of independent experiments, making this is a versatile and valuable cellular model for fundamental and early pre-clinical research of tau-targeted therapies.

摘要

细胞内tau 蛋白的积累是阿尔茨海默病和进行性核上性麻痹的标志,也是其他神经退行性疾病的标志,这些疾病统称为tau 病。尽管我们越来越了解导致 tau 病理发生和进展的机制,但该领域仍然缺乏适当的疾病模型来促进药物发现。在这里,我们使用人源化小鼠皮质神经元和 P301S 人 tau 转基因动物的种子,建立了一种新型的、可调节的全长 4R tau 积累的基于种子的神经元模型。该模型显示出特定且一致的形成神经元内不溶性全长 4R tau 包含物,这些包含物对 tau 病理的已知标志物(AT8、PHF-1、MC-1)呈阳性,并产生有能力进行种子形成的 tau。用 tau siRNA 处理可以阻止新包含物的形成,为评估旨在减少细胞内 tau 池的潜在治疗候选物提供了强大的内部对照。此外,所使用的实验设置和数据分析技术在需要多轮独立实验的更大规模设计中提供了一致的结果,这使得该模型成为 tau 靶向治疗的基础和早期临床前研究的多功能和有价值的细胞模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d4/10072482/e63ad7282908/pone.0283941.g001.jpg

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