College of Engineering, Multidisciplinary Nanotechnology Centre, Swansea University, Singleton Park, Swansea, United Kingdom.
PLoS One. 2012;7(2):e31592. doi: 10.1371/journal.pone.0031592. Epub 2012 Feb 9.
In this study scanning near-field optical microscopy (SNOM) has been utilised in conjunction with quantum dot labelling to interrogate the biomolecular composition of cell membranes. The technique overcomes the limits of optical diffraction found in standard fluorescence microscopy and also yields vital topographic information. The technique has been applied to investigate cell-cell adhesion in human epithelial cells. This has been realised through immunofluorescence labelling of the cell-cell adhesion protein E-cadherin. Moreover, a dual labelling protocol has been optimised to facilitate a comparative study of the adhesion mechanisms and the effect of aberrant adhesion protein expression in both healthy and cancerous epithelial cells. This study reports clear differences in the morphology and phenotype of healthy and cancerous cells. In healthy prostate epithelial cells (PNT2), E-cadherin was predominantly located around the cell periphery and within filopodial extensions. The presence of E-cadherin appeared to be enhanced when cell-cell contact was established. In contrast, examination of metastatic prostate adenocarcinoma cells (PC-3) revealed no E-cadherin labelling around the periphery of the cells. This lack of functional E-cadherin in PC-3 cells coincided with a markedly different morphology and PC-3 cells were not found to form close cell-cell associations with their neighbours. We have demonstrated that with a fully optimised sample preparation methodology, multiplexed quantum dot labelling in conjunction with SNOM imaging can be successfully applied to interrogate biomolecular localisation within delicate cellular membranes.
在这项研究中,扫描近场光学显微镜 (SNOM) 与量子点标记结合使用,以检测细胞膜的生物分子组成。该技术克服了标准荧光显微镜中存在的光学衍射限制,同时还提供了重要的形貌信息。该技术已应用于研究人上皮细胞的细胞间粘附。这是通过细胞间粘附蛋白 E-钙粘蛋白的免疫荧光标记来实现的。此外,还优化了双重标记方案,以促进对健康和癌细胞中粘附机制和异常粘附蛋白表达的影响进行比较研究。本研究报告了健康和癌细胞形态和表型的明显差异。在健康的前列腺上皮细胞 (PNT2) 中,E-钙粘蛋白主要位于细胞周围和丝状伪足内。当建立细胞-细胞接触时,E-钙粘蛋白的存在似乎增强了。相比之下,对转移性前列腺腺癌细胞 (PC-3) 的检查显示细胞周围没有 E-钙粘蛋白标记。PC-3 细胞中功能性 E-钙粘蛋白的缺失与明显不同的形态学相吻合,并且没有发现 PC-3 细胞与其相邻细胞形成紧密的细胞间关联。我们已经证明,通过完全优化的样品制备方法,与 SNOM 成像结合使用的多重量子点标记可以成功地应用于检测脆弱细胞膜内的生物分子定位。