Adelizzi Beatrice, Aloi Antonio, Van Zee Nathan J, Palmans Anja R A, Meijer E W, Voets Ilja K
ACS Nano. 2018 May 22;12(5):4431-4439. doi: 10.1021/acsnano.8b00396. Epub 2018 May 7.
Despite the rapid development of complex functional supramolecular systems, visualization of these architectures under native conditions at high resolution has remained a challenging endeavor. Super-resolution microscopy was recently proposed as an effective tool to unveil one-dimensional nanoscale structures in aqueous media upon chemical functionalization with suitable fluorescent probes. Building upon our previous work, which enabled photoactivation localization microscopy in organic solvents, herein, we present the imaging of one-dimensional supramolecular polymers in their native environment by interface point accumulation for imaging in nanoscale topography (iPAINT). The noncovalent staining, typical of iPAINT, allows the investigation of supramolecular polymers' structure in situ without any chemical modification. The quasi-permanent adsorption of the dye to the polymer is exploited to identify block-like arrangements within supramolecular fibers, which were obtained upon mixing homopolymers that were prestained with different colors. The staining of the blocks, maintained by the lack of exchange of the dyes, permits the imaging of complex structures for multiple days. This study showcases the potential of PAINT-like strategies such as iPAINT to visualize multicomponent dynamic systems in their native environment with an easy, synthesis-free approach and high spatial resolution.
尽管复杂功能超分子系统发展迅速,但在自然条件下以高分辨率可视化这些结构仍然是一项具有挑战性的工作。超分辨率显微镜最近被提议作为一种有效的工具,用于在用合适的荧光探针进行化学功能化后,揭示水性介质中的一维纳米级结构。基于我们之前在有机溶剂中实现光激活定位显微镜的工作,在此,我们通过纳米级形貌成像的界面点积累(iPAINT)展示了一维超分子聚合物在其天然环境中的成像。iPAINT典型的非共价染色允许在不进行任何化学修饰的情况下原位研究超分子聚合物的结构。利用染料对聚合物的准永久吸附来识别超分子纤维内的块状排列,这些纤维是在混合预先用不同颜色染色的均聚物后获得的。由于染料缺乏交换而保持的块状染色允许对复杂结构进行多天成像。这项研究展示了诸如iPAINT之类的类似PAINT策略的潜力,即以简单、无需合成的方法和高空间分辨率在其天然环境中可视化多组分动态系统。