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Two-dimensional surface plasmon resonance imager: An approach to study neuronal differentiation

机译:二维表面等离子体激元共振成像仪:研究神经元分化的一种方法

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摘要

There is a growing demand for the development of a new bioanalytical technique that is capable of monitoring neuronal differentiation noninvasively, in real time, and without any fluorescent probes. In a previous article, we demonstrated that a high-resolution two-dimensional surface plasmon resonance (2D-SPR) imager was very useful to monitor cell response on chemical stimulation in which protein kinase C (PKC) translocation was related. In the current study, we focused on developing a new method for monitoring neuronal differentiation and examined the application of the high-resolution 2D-SPR imager to monitor neuronal differentiation noninvasively and by a label-free format. We successfully monitored the intracellular signal transduction, which was mainly translocation of PKC in PC12 cells by the 2D-SPR imager, and found that the cells treated with a differentiation factor, nerve growth factor (NGF), showed a remarkable enhancement of 2D-SPR response to muscarine, carbachol, and acetylcholine stimulation. The results demonstrated that 2D-SPR sensing is applicable to in situ assessment of neuronal differentiation and to studying the expression state of the specific receptors in the living state.
机译:越来越需要开发一种新的生物分析技术,该技术能够无创,实时,无任何荧光探针地监测神经元分化。在上一篇文章中,我们证明了高分辨率二维表面等离振子共振(2D-SPR)成像仪对于监测与蛋白激酶C(PKC)易位相关的化学刺激的细胞反应非常有用。在当前的研究中,我们专注于开发一种监测神经元分化的新方法,并研究了高分辨率2D-SPR成像仪在无创且无标签的情况下监测神经元分化的应用。我们成功地监测了细胞内信号转导,这主要是2D-SPR成像仪在PKC在PC12细胞中的易位,发现用分化因子,神经生长因子(NGF)处理的细胞显示了2D-SPR的显着增强对毒蕈碱,卡巴胆碱和乙酰胆碱刺激的反应。结果表明2D-SPR传感可用于神经元分化的原位评估和研究特定受体在生存状态下的表达状态。

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