首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Aging, but not tau pathology, impacts olfactory performances and somatostatin systems in THY-Tau22 mice
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Aging, but not tau pathology, impacts olfactory performances and somatostatin systems in THY-Tau22 mice

机译:衰老会影响THY-Tau22小鼠的嗅觉表现和生长抑素系统,但不会影响tau病理

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摘要

Somatostatin (SOM) cortical levels decline in Alzheimer's disease (AD) in correlation with cognitive impairment severity, the latter being closely related to the presence of neurofibrillary tangles. Impaired olfaction is another hallmark of AD tightly related to tau pathology in the olfactory pathways. Recent studies showed that SOM modulates olfactory processing, suggesting that alterations in SOM levels participate to olfactory deficits in AD. Herein, we first observed that human olfactory peduncle and cortex are enriched in SOM cells and fibers, in aged postmortem brains. Then, the possible link between SOM alterations and olfactory deficits was evaluated by exploring the impact of age and tau hyperphosphorylation on olfactory SOM networks and behavioral performances in THY-Tau22 mice, a tauopathy transgenic model. Distinct molecular repertoires of SOM peptide and receptors were associated to sensory or cortical olfactory processing structures. Aging mainly affected SOM neurotransmission in piriform and entorhinal cortex in wild-type mice, although olfactory performances decreased. However, no further olfactory impairment was evidenced in THY-Tau22 mice until 12 months although tau pathology early affected olfactory cortical structures. Thus, tau hyperphosphorylation per se has a limited impact on olfactory performances in THY-Tau22 mice. (C) 2015 Elsevier Inc. All rights reserved.
机译:阿尔茨海默氏病(AD)中生长抑素(SOM)皮质水平的下降与认知功能障碍的严重程度相关,后者与神经原纤维缠结的存在密切相关。嗅觉障碍是AD与嗅觉途径中tau病理密切相关的另一个标志。最近的研究表明,SOM调节嗅觉处理,表明SOM水平的改变参与了AD的嗅觉缺陷。在这里,我们首先观察到人的嗅觉花梗和皮层在衰老的死后大脑中富含SOM细胞和纤维。然后,通过探索年龄和tau过度磷酸化对tauopathy转基因模型THY-Tau22小鼠的嗅觉SOM网络和行为表现的影响,评估了SOM改变与嗅觉缺陷之间的可能联系。 SOM肽和受体的不同分子库与感觉或皮层嗅觉加工结构有关。衰老主要影响野生型小鼠的梨状和内嗅皮层的SOM神经传递,尽管嗅觉性能下降。然而,尽管tau病理学早期影响嗅觉皮质结构,但是直到12个月,在THY-Tau22小鼠中没有进一步的嗅觉损害的证据。因此,tau过度磷酸化本身对THY-Tau22小鼠的嗅觉性能影响有限。 (C)2015 Elsevier Inc.保留所有权利。

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