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阿尔茨海默病小鼠模型中海马腹侧 CA1 锥体神经元放电特性的早期偏离。

Early derailment of firing properties in CA1 pyramidal cells of the ventral hippocampus in an Alzheimer's disease mouse model.

机构信息

Faculty of Sciences and Technologies for Humans and Environment, University Campus Bio-Medico, Rome 00128, Italy.

Faculty of Medicine and Surgery, University Campus Bio-Medico, Rome 00128, Italy; Department of Experimental Neurosciences, IRCCS Santa Lucia Foundation, Rome 00143, Italy.

出版信息

Exp Neurol. 2022 Apr;350:113969. doi: 10.1016/j.expneurol.2021.113969. Epub 2021 Dec 31.

Abstract

Gradual decline in cognitive and non-cognitive functions are considered clinical hallmarks of Alzheimer's Disease (AD). Post-mortem autoptic analysis shows the presence of amyloid β deposits, neuroinflammation and severe brain atrophy. However, brain circuit alterations and cellular derailments, assessed in very early stages of AD, still remain elusive. The understanding of these early alterations is crucial to tackle defective mechanisms. In a previous study we proved that the Tg2576 mouse model of AD displays functional deficits in the dorsal hippocampus and relevant behavioural AD-related alterations. We had shown that these deficits in Tg2576 mice correlate with the precocious degeneration of dopamine (DA) neurons in the Ventral Tegmental Area (VTA) and can be restored by L-DOPA treatment. Due to the distinct functionality and connectivity of dorsal versus ventral hippocampus, here we investigated neuronal excitability and synaptic functionality in the ventral CA1 hippocampal sub-region of Tg2576 mice. We found an age-dependent alteration of cell excitability and firing in pyramidal neurons starting at 3 months of age, that correlates with reduced levels in the ventral CA1 of tyrosine hydroxylase - the rate-limiting enzyme of DA synthesis. Additionally, at odds with the dorsal hippocampus, we found no alterations in basal glutamatergic transmission and long-term plasticity of ventral neurons in 8-month old Tg2576 mice compared to age-matched controls. Last, we used computational analysis to model the early derailments of firing properties observed and hypothesize that the neuronal alterations found could depend on dysfunctional sodium and potassium conductances, leading to anticipated depolarization-block of action potential firing. The present study depicts that impairment of cell excitability and homeostatic control of firing in ventral CA1 pyramidal neurons is a prodromal feature in Tg2576 AD mice.

摘要

认知和非认知功能的逐渐下降被认为是阿尔茨海默病(AD)的临床特征。死后尸检分析显示存在淀粉样β沉积、神经炎症和严重的脑萎缩。然而,在 AD 的早期阶段,评估大脑回路改变和细胞脱轨仍然难以捉摸。了解这些早期变化对于解决有缺陷的机制至关重要。在之前的一项研究中,我们证明了 AD 的 Tg2576 小鼠模型在背侧海马体中表现出功能缺陷,以及与 AD 相关的行为改变。我们已经表明,Tg2576 小鼠的这些缺陷与腹侧被盖区(VTA)中多巴胺(DA)神经元的过早退化有关,并且可以通过 L-DOPA 治疗来恢复。由于背侧海马体和腹侧海马体的功能和连接不同,我们在这里研究了 Tg2576 小鼠腹侧 CA1 海马亚区的神经元兴奋性和突触功能。我们发现,从 3 个月大开始,细胞兴奋性和锥体神经元放电出现与年龄相关的改变,这与腹侧 CA1 酪氨酸羟化酶水平降低有关,酪氨酸羟化酶是 DA 合成的限速酶。此外,与背侧海马体不同的是,与年龄匹配的对照组相比,我们在 8 个月大的 Tg2576 小鼠中没有发现腹侧神经元的基础谷氨酸能传递和长时程可塑性的改变。最后,我们使用计算分析来模拟观察到的放电特性的早期脱轨,并假设发现的神经元改变可能取决于钠和钾电导的功能障碍,导致预期的动作电位放电去极化阻断。本研究表明,在 Tg2576 AD 小鼠中,腹侧 CA1 锥体神经元的细胞兴奋性和放电的自动调节控制受损是一种前驱特征。

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