High spatiotemporal resolution live-cell imaging on plasmonic metasurfaces

K. Tamada, Shi Ting Lee, Shihomi Masuda, Thasaneeya Kuboki, Yusuke Arima, S. Kidoaki, K. Okamoto, Yukiko Aida, Sou Ryuzaki
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Abstract

Recently we have developed LSPR-mediated high resolution live-cell imaging techniques for adhesive cells on plasmonic metasurface composed of self-assembled gold or silver nanoparticles. Compared with other super-resolution microscopy techniques, our LSPR-mediated imaging is extremely simple but quite effective for monitoring the molecular dynamics at a nanointerface. The LSPR of the plasmonic metasurface provides high-contrast interfacial images due to the confined light within a region a few tens of nanometers from the particles and the enhancement of fluorescence. The improved lateral resolution reaches down to the theoretical limit even during cell movement due to the properties of the metasurface with an extremely high refractive index. In the presentation, we will present our latest imaging data concerning molecular dynamics in live cells, which were not visualized by other super-resolution imaging methods with low temporal resolution.
等离子体超表面的高时空分辨率活细胞成像
最近,我们开发了lspr介导的高分辨率活细胞成像技术,用于自组装金或银纳米粒子组成的等离子体超表面上的粘附细胞。与其他超分辨率显微技术相比,我们的lspr介导成像非常简单,但非常有效地监测纳米界面上的分子动力学。等离子体超表面的LSPR提供了高对比度的界面图像,这是由于距离粒子几十纳米范围内的受限光和荧光的增强。由于具有极高折射率的超表面特性,即使在细胞运动过程中,横向分辨率也达到了理论极限。在报告中,我们将展示我们关于活细胞分子动力学的最新成像数据,这些数据是其他低时间分辨率的超分辨率成像方法无法可视化的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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