Proulx Éliane, Fraser Paul, McLaurin JoAnne, Lambe Evelyn K
Departments of Physiology.
Medical Biophysics, Tanz Centre for Research in Neurodegenerative Diseases, and.
J Neurosci. 2015 Sep 16;35(37):12779-91. doi: 10.1523/JNEUROSCI.4501-14.2015.
Attention deficits in Alzheimer's disease can exacerbate its other cognitive symptoms, yet relevant disruptions of key prefrontal circuitry are not well understood. Here, in the TgCRND8 mouse model of this neurological disorder, we demonstrate and characterize a disruption of cholinergic excitation in the major corticothalamic layer of the prefrontal cortex, in which modulation by acetylcholine is essential for optimal attentional function. Using electrophysiology with concurrent multiphoton imaging, we show that layer 6 pyramidal cells are unable to sustain cholinergic excitation to the same extent as their nontransgenic littermate controls, as a result of the excessive activation of calcium-activated hyperpolarizing conductances. We report that cholinergic excitation can be improved in TgCRND8 cortex by pharmacological blockade of SK channels, suggesting a novel target for the treatment of cognitive dysfunction in Alzheimer's disease.
Alzheimer's disease is accompanied by attention deficits that exacerbate its other cognitive symptoms. In brain slices of a mouse model of this neurological disorder, we demonstrate, characterize, and rescue impaired cholinergic excitation of neurons essential for optimal attentional performance. In particular, we show that the excessive activation of a calcium-activated potassium conductance disrupts the acetylcholine excitation of prefrontal layer 6 pyramidal neurons and that its blockade normalizes responses. These findings point to a novel potential target for the treatment of cognitive dysfunction in Alzheimer's disease.
阿尔茨海默病中的注意力缺陷会加剧其其他认知症状,但关键前额叶神经回路的相关破坏情况尚未得到充分了解。在此,在这种神经疾病的TgCRND8小鼠模型中,我们证明并描述了前额叶皮质主要皮质丘脑层胆碱能兴奋的破坏,其中乙酰胆碱的调节对于最佳注意力功能至关重要。通过结合多光子成像的电生理学方法,我们发现6层锥体细胞无法像其非转基因同窝对照那样维持相同程度的胆碱能兴奋,这是由于钙激活超极化电导过度激活所致。我们报告称,通过药理学阻断SK通道可改善TgCRND8皮质中的胆碱能兴奋,这提示了一种治疗阿尔茨海默病认知功能障碍的新靶点。
阿尔茨海默病伴有注意力缺陷,会加剧其其他认知症状。在这种神经疾病小鼠模型的脑片中,我们证明、描述并挽救了对最佳注意力表现至关重要的神经元的胆碱能兴奋受损情况。特别是,我们表明钙激活钾电导的过度激活破坏了前额叶6层锥体细胞的乙酰胆碱兴奋,而对其进行阻断可使反应正常化。这些发现指出了一种治疗阿尔茨海默病认知功能障碍的新潜在靶点。