Pope Iestyn, Tanner Hugh, Masia Francesco, Payne Lukas, Arkill Kenton Paul, Mantell Judith, Langbein Wolfgang, Borri Paola, Verkade Paul
School of Biosciences, Cardiff University, Museum Avenue, Cardiff, CF10 3AX, UK.
School of Biochemistry, University of Bristol, University Walk, Bristol, UK.
Light Sci Appl. 2023 Mar 29;12(1):80. doi: 10.1038/s41377-023-01115-4.
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are visible both in light and electron microscopy. Here we demonstrate a CLEM approach using small gold nanoparticles as a single probe. Individual gold nanoparticles bound to the epidermal growth factor protein were located with nanometric precision background-free in human cancer cells by light microscopy using resonant four-wave mixing (FWM), and were correlatively mapped with high accuracy to the corresponding transmission electron microscopy images. We used nanoparticles of 10 nm and 5 nm radius, and show a correlation accuracy below 60 nm over an area larger than 10 µm size, without the need for additional fiducial markers. Correlation accuracy was improved to below 40 nm by reducing systematic errors, while the localisation precision is below 10 nm. Polarisation-resolved FWM correlates with nanoparticle shapes, promising for multiplexing by shape recognition in future applications. Owing to the photostability of gold nanoparticles and the applicability of FWM microscopy to living cells, FWM-CLEM opens up a powerful alternative to fluorescence-based methods.
相关光电子显微镜(CLEM)需要有在光学显微镜和电子显微镜下都可见的强大探针。在此,我们展示了一种使用小金纳米颗粒作为单一探针的CLEM方法。通过共振四波混频(FWM)光学显微镜,结合表皮生长因子蛋白的单个金纳米颗粒在人癌细胞中以纳米级精度无背景定位,并与相应的透射电子显微镜图像高精度相关映射。我们使用了半径为10纳米和5纳米的纳米颗粒,在大于10微米大小的区域内显示出低于60纳米的相关精度,无需额外的基准标记。通过减少系统误差,相关精度提高到低于40纳米,而定位精度低于10纳米。偏振分辨FWM与纳米颗粒形状相关,有望在未来应用中通过形状识别进行多路复用。由于金纳米颗粒的光稳定性以及FWM显微镜对活细胞的适用性,FWM-CLEM为基于荧光的方法提供了一种强大的替代方案。