Jolas Thierry, Zhang Xue-Song, Zhang Qi, Wong Gwendolyn, Del Vecchio Robert, Gold Lisa, Priestley Tony
CNS/CV Research, Schering-Plough Research Institute, 2015 Galloping Hill Road, Kenilworth, New Jersey 07033, USA.
Neurobiol Dis. 2002 Dec;11(3):394-409. doi: 10.1006/nbdi.2002.0557.
The present study reports changes in synaptic function and plasticity [long-term potentiation (LTP)] in a recently developed mouse model of Alzheimer's disease (CRND8 line) harboring a double amyloid precursor protein mutation (APP(swe/ind)). In 9-week-old preplaque transgenic (Tg) mice brain slices, basal synaptic function in the hippocampal CA1 area was unchanged. Only one of three different LTP induction protocols revealed early influence of genotype on synaptic plasticity. By 20 weeks of age, there were numerous plaques in the hippocampus from Tg mice associated with more robust evidence for genotype-related effects in synaptic function. Field potential maximum slope was consistently decreased and LTP was increased, irrespective of the stimulation protocol used. In addition, there was clear evidence of increased synaptic excitability in Tg mice. Furthermore, the maximum amplitude of evoked IPSCs was decreased whereas the maximum amplitude of evoked EPSCs was increased in 20-week-old Tg mice. Collectively, these results suggest a number of APP genotype-related changes in the fine-tuning of the CA1 area circuitry, some of which are likely to contribute to the pathology-dependent effects on LTP observed in CRND8 mice.
本研究报告了在一种最近开发的携带双淀粉样前体蛋白突变(APP(swe/ind))的阿尔茨海默病小鼠模型(CRND8品系)中突触功能和可塑性[长时程增强(LTP)]的变化。在9周龄的无斑块转基因(Tg)小鼠脑片中,海马CA1区的基础突触功能未发生改变。三种不同的LTP诱导方案中只有一种显示出基因型对突触可塑性的早期影响。到20周龄时,Tg小鼠海马中有大量斑块,同时有更强有力的证据表明基因型对突触功能有相关影响。场电位最大斜率持续降低,LTP增强,与所使用的刺激方案无关。此外,有明确证据表明Tg小鼠的突触兴奋性增加。此外,在20周龄的Tg小鼠中,诱发抑制性突触后电流(IPSC)的最大幅度降低,而诱发兴奋性突触后电流(EPSC)的最大幅度增加。总体而言,这些结果表明在CA1区神经回路的微调中存在一些与APP基因型相关的变化,其中一些变化可能导致了在CRND8小鼠中观察到的与病理相关的LTP效应。