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A sensitive and specific nanosensor for monitoring extracellular potassium levels in the brain

机译:用于监测大脑细胞外钾水平的敏感和特异性纳米传感器

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Extracellular potassium concentration affects the membrane potential of neurons, and, thus, neuronal activity. Indeed, alterations of potassium levels can be related to neurological disorders, such as epilepsy and Alzheimer's disease, and, therefore, selectively detecting extracellular potassium would allow the monitoring of disease. However, currently available optical reporters are not capable of detecting small changes in potassium, in particular, in freely moving animals. Furthermore, they are susceptible to interference from sodium ions. Here, we report a highly sensitive and specific potassium nanosensor that can monitor potassium changes in the brain of freely moving mice undergoing epileptic seizures. An optical potassium indicator is embedded in mesoporous silica nanoparticles, which are shielded by an ultrathin layer of a potassium-permeable membrane, which prevents diffusion of other cations and allows the specific capturing of potassium ions. The shielded nanosensor enables the spatial mapping of potassium ion release in the hippocampus of freely moving mice.
机译:细胞外钾浓度影响神经元的膜电位,从而影响神经元活性。实际上,钾水平的改变可以与神经疾病有关,例如癫痫和阿尔茨海默病,因此,选择性地检测细胞外钾会允许监测疾病。然而,目前可用的光学记录器不能检测到钾的小变化,特别是在自由移动的动物中。此外,它们易于从钠离子干扰。在这里,我们报告了一种高度敏感和特异性的钾纳米传感器,其可以监测经过癫痫发作的自由移动小鼠的大脑中的钾变化。将光学钾指示剂嵌入中孔二氧化硅纳米颗粒中,其被耐钾渗透膜的超薄层屏蔽,这防止了其他阳离子的扩散并允许钾离子的特异性捕获。屏蔽的纳米传感器使得在自由移动小鼠的海马中释放的空间映射。

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