首页> 美国卫生研究院文献>other >Tau Pathology Spread in PS19 Tau Transgenic Mice Following Locus Coeruleus (LC) Injections of Synthetic Tau Fibrils is Determined by the LC’s Afferent and Efferent Connections
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Tau Pathology Spread in PS19 Tau Transgenic Mice Following Locus Coeruleus (LC) Injections of Synthetic Tau Fibrils is Determined by the LC’s Afferent and Efferent Connections

机译:局灶性脑岛(LC)注射合成Tau原纤维后PS19 Tau转基因小鼠中的Tau病理传播取决于LC的传入和传出连接

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摘要

Filamentous tau inclusions are hallmarks of Alzheimer’s disease (AD) and other neurodegenerative tauopathies. An increasing number of studies implicate the cell-to-cell propagation of tau pathology in the progression of tauopathies. We recently showed [] that inoculation of preformed synthetic tau fibrils (tau PFFs) into the hippocampus of young transgenic (Tg) mice (PS19) overexpressing human P301S mutant tau induced robust tau pathology in anatomically connected brain regions including the locus coeruleus (LC). Since Braak and colleagues hypothesized that the LC is the first brain structure to develop tau lesions and since LC has widespread connections throughout the CNS, LC neurons could be the critical initiators of the stereotypical spreading of tau pathology through connectome-dependent transmission of pathological tau in AD. Here, we report that injections of tau PFFs into the LC of PS19 mice induced propagation of tau pathology to major afferents and efferents of the LC. Notably, tau pathology propagated along LC efferent projections was localized not only to axon terminals but also to neuronal perikarya, suggesting transneuronal transfer of templated tau pathology to neurons receiving LC projections. Further, brainstem neurons giving rise to major LC afferents also developed perikaryal tau pathology. Surprisingly, while tangle bearing neurons degenerated in the LC ipsilateral to the injection site starting 6 months post-injection, no neuron loss was seen in the contralateral LC wherein tangle bearing neurons gradually cleared tau pathology by 6–12 months post-injection. However, the spreading pattern of tau pathology observed in our LC-injected mice is different from that in AD brains since hippocampus and entorhinal cortex, which are affected in early stages of AD, were largely spared of tau inclusions in our model. Thus, while our study tested critical aspects of the Braak hypothesis of tau pathology spread, this novel mouse model provides unique opportunities to elucidate mechanisms underlying the selective vulnerability of neurons to acquire tau pathology and succumb to or resist tau-mediated neurodegeneration.
机译:丝状tau夹杂物是阿尔茨海默氏病(AD)和其他神经退行性疾病的标志。越来越多的研究将tau病理学在细胞间的传播牵连到tauopathies的进展中。我们最近显示[],将预先合成的合成tau原纤维(tau PFF)接种到过度表达人P301S突变体tau的年轻转基因(Tg)小鼠(PS19)的海马中,在解剖上相连的大脑区域(包括蓝绿色斑点(LC))中诱导了稳健的tau病理。由于Braak及其同事假设LC是第一个发展tau病变的大脑结构,并且由于LC在整个CNS中具有广泛的联系,因此LC神经元可能是通过tau病理学中依赖连接基因组的传递而导致tau病理定型传播的关键发起者。广告。在这里,我们报道tau PFFs注射到PS19小鼠的LC中诱导tau病理学传播到LC的主要传入和传出。值得注意的是,沿着LC传出投射传播的tau病理不仅局限于轴突末端,而且还定位于神经元周围核,这表明模板化tau病理的跨神经元转移至接受LC投射的神经元。此外,引起主要LC传入的脑干神经元也发展了角周tau病理。出人意料的是,虽然从注射后6个月开始,在缠结到注射部位的同侧LC中使缠结神经元退化,但是在对侧LC中没有看到神经元丢失,其中对侧LC直到注射后6-12个月逐渐清除了tau病理。但是,在我们注射LC的小鼠中观察到的tau病理学扩散模式与AD脑中的扩散模式不同,因为在AD早期受到影响的海马和内嗅皮层在我们的模型中很大程度上避免了tau内含物。因此,尽管我们的研究测试了tau病理散布的Braak假设的关键方面,但这种新颖的小鼠模型为阐明潜在的神经元机制提供了独特的机会,这些机制使神经元选择性地获得了tau病理并屈服于或抵抗tau介导的神经变性。

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