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Fluorescent magnetic nanoparticles for modulating the level of intracellular Ca2+ in motoneurons

机译:对调制荧光磁性纳米颗粒运动神经元的细胞内钙离子水平

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This report introduces both synthesis and in vitro biological behaviour of dual magnetic-fluorescent silica nanoparticles. The amino group-decoration of 78 nm sized silica nanoparticles enables their efficient internalization into motoneurons, which is visualized by the red fluorescence arising from [Ru(dipy)(3)](2+) complexes encapsulated into a silica matrix. The internalized nanoparticles are predominantly located in the cell cytoplasm as revealed by confocal microscopy imaging. The magnetic function of the nanoparticles resulted from the incorporation of 17 nm sized superparamagnetic iron oxide cores into the silica matrix, enabling their responsivity to magnetic fields. Fluorescence analysis revealed the "on-off" switching of Ca2+ influx under the application and further removal of the permanent magnetic field. This result for the first time highlights the movement of the nanoparticles within the cell cytoplasm in the permanent magnetic field as a promising tool to enhance the neuronal activity of motoneurons.
机译:本报告介绍了合成和体外双magnetic-fluorescent的生物学行为硅纳米颗粒。78纳米大小的二氧化硅纳米粒子使他们有效内化成运动,可视化的红色荧光产生从[俄文(dipy)(3)(2 +)复合物封装成一个硅矩阵。纳米粒子主要是位于共焦显微镜细胞细胞质透露成像。纳米粒子引起的17个纳米大小的超顺磁性氧化铁内核到二氧化硅矩阵,使他们磁场的响应率。分析显示Ca2 +的“开关”开关流入下应用和进一步去除永久的磁场。第一次突出的运动的纳米粒子在细胞内细胞质永久磁场作为一个有前途的工具增强运动神经元的神经活动。

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