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Systematic Study of the Surface Plasmon Resonance Signals Generated by Cells for Sensors with Different Characteristic Lengths

机译:不同特征长度的传感器细胞产生的表面等离子体共振信号的系统研究

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摘要

The objectives of this study were to establish an in-depth understanding of the signals induced by mammalian cells in surface plasmon resonance (SPR) sensing. To this end, two plasmonic structures with different propagation and penetration distances were used: conventional surface plasmon resonance and long-range surface plasmon resonance. Long-range SPR showed a lesser sensitivity to the absolute number of round cells but a greater resolution due to its very narrow spectral dip. The effect of cell spreading was also investigated and the resonance angle of long-range SPR was mostly insensitive unlike in the conventional SPR counterpart. Experimental data was compared with suitable models used in the SPR literature. Although these simple averaging models could be used to describe some of the experimental data, important deviations were observed which could be related to the fact that they do not take into consideration critical parameters such as plasmon scattering losses, which is particularly crucial in the case of long-range SPR structures. The comparison between conventional and long-range SPR for cellular schemes revealed important fundamental differences in their responses to the presence of cells, opening new horizons for SPR-based cell assays. From this study, long-range SPR is expected to be more sensitive towards both the detection of intracellular events resulting from biological stimulation and the detection of microorganisms captured from complex biological samples.
机译:这项研究的目的是建立对哺乳动物细胞在表面等离振子共振(SPR)传感中诱导的信号的深入了解。为此,使用了两种具有不同传播和穿透距离的等离激元结构:常规表面等离振子共振和远程表面等离振子共振。远程SPR对圆形细胞的绝对数量显示出较低的敏感性,但由于其光谱范围非常窄,因此分辨率较高。还研究了细胞扩散的影响,与传统的SPR对应物不同,远程SPR的共振角大多不敏感。将实验数据与SPR文献中使用的合适模型进行了比较。尽管可以使用这些简单的平均模型来描述一些实验数据,但仍观察到重要的偏差,这可能与以下事实有关:它们没有考虑关键参数(例如等离激元散射损耗),这在以下情况下尤其重要:远程SPR结构。对于细胞方案,常规和远程SPR之间的比较表明,它们对细胞的反应具有重要的根本差异,这为基于SPR的细胞分析开辟了新的视野。根据这项研究,预计远程SPR对检测生物刺激引起的细胞内事件以及检测从复杂生物样品中捕获的微生物都更加敏感。

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