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老年PDAPP小鼠海马CA1锥体神经元的内在兴奋性改变。

Altered intrinsic excitability of hippocampal CA1 pyramidal neurons in aged PDAPP mice.

作者信息

Tamagnini Francesco, Novelia Janet, Kerrigan Talitha L, Brown Jon T, Tsaneva-Atanasova Krasimira, Randall Andrew D

机构信息

Medical School, University of Exeter Exeter, UK ; School of Physiology and Pharmacology, University of Bristol Bristol, UK.

Department of Mathematics, College of Engineering, Mathematics and Physical Sciences, University of Exeter Exeter, UK.

出版信息

Front Cell Neurosci. 2015 Oct 14;9:372. doi: 10.3389/fncel.2015.00372. eCollection 2015.

Abstract

Amyloidopathy involves the accumulation of insoluble amyloid β (Aβ) species in the brain's parenchyma and is a key histopathological hallmark of Alzheimer's disease (AD). Work on transgenic mice that overexpress Aβ suggests that elevated Aβ levels in the brain are associated with aberrant epileptiform activity and increased intrinsic excitability (IE) of CA1 hippocampal neurons. In this study we examined if similar changes could be observed in hippocampal CA1 pyramidal neurons from aged PDAPP mice (20-23 month old, Indiana mutation: V717F on APP gene) compared to their age-matched wild-type littermate controls. Whole-cell current clamp recordings revealed that sub-threshold intrinsic properties, such as input resistance, resting membrane potential and hyperpolarization activated "sag" were unaffected, but capacitance was significantly decreased in the transgenic animals. No differences between genotypes were observed in the overall number of action potentials (AP) elicited by 500 ms supra-threshold current stimuli. PDAPP neurons, however, exhibited higher instantaneous firing frequencies after accommodation in response to high intensity current injections. The AP waveform was narrower and shorter in amplitude in PDAPP mice: these changes, according to our in silico model of a CA1/3 pyramidal neuron, depended on the respective increase and reduction of K(+) and Na(+) voltage-gated channels maximal conductances. Finally, the after-hyperpolarization, seen after the first AP evoked by a +300 pA current injection and after 50 Hz AP bursts, was more pronounced in PDAPP mice. These data show that Aβ-overexpression in aged mice altered the capacitance, the neuronal firing and the AP waveform of CA1 pyramidal neurons. Some of these findings are consistent with previous work on younger PDAPP; they also show important differences that can be potentially ascribed to the interaction between amyloidopathy and ageing. Such a change of IE properties over time underlies that the increased incidence of seizure observed in AD patients might rely on different mechanistic pathways during progression of the disease.

摘要

淀粉样变性病涉及不溶性淀粉样β(Aβ)物质在脑实质中的积累,是阿尔茨海默病(AD)的关键组织病理学标志。对过度表达Aβ的转基因小鼠的研究表明,脑中Aβ水平升高与异常的癫痫样活动以及CA1海马神经元内在兴奋性(IE)增加有关。在本研究中,我们检查了与年龄匹配的野生型同窝对照相比,老年PDAPP小鼠(20 - 23月龄;APP基因上的印第安纳突变:V717F)海马CA1锥体神经元中是否能观察到类似变化。全细胞电流钳记录显示,阈下内在特性,如输入电阻、静息膜电位和超极化激活的“下垂”不受影响,但转基因动物的电容显著降低。在500毫秒阈上电流刺激引发的动作电位(AP)总数上,未观察到基因型之间的差异。然而,PDAPP神经元在适应高强度电流注入后表现出更高的瞬时放电频率。在PDAPP小鼠中,AP波形更窄且幅度更短:根据我们的CA1/3锥体神经元计算机模拟模型,这些变化取决于K(+)和Na(+)电压门控通道最大电导的相应增加和减少。最后,在由 +300 pA电流注入引发的第一个AP之后以及50 Hz AP爆发之后出现的后超极化,在PDAPP小鼠中更为明显。这些数据表明,老年小鼠中Aβ的过度表达改变了CA1锥体神经元的电容、神经元放电和AP波形。其中一些发现与先前对年轻PDAPP的研究一致;它们也显示出重要差异,这可能归因于淀粉样变性病与衰老之间的相互作用。随着时间推移IE特性的这种变化表明,AD患者中观察到癫痫发作发生率增加可能在疾病进展过程中依赖于不同的机制途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a78/4604241/a65627efb82d/fncel-09-00372-g0001.jpg

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