McArdle Laboratory for Cancer Research, Department of Oncology, University of Wisconsin-Madison, Madison, WI, USA.
Biophysics Graduate Program, University of Wisconsin-Madison, Madison, WI, USA.
Commun Biol. 2024 Oct 15;7(1):1325. doi: 10.1038/s42003-024-07035-2.
Expansion Microscopy (ExM) is an innovative and cost-effective super-resolution microscopy technique that has become popular in cell biology research. It achieves super-resolution by physically expanding specimens. Since its introduction, ExM has undergone continuous methodological developments to enhance its resolution and labeling capabilities. However, ExM imaging often encounters sample drift during image acquisition due to the physical movement of the expanded hydrogel, posing a significant challenge for accurate image reconstruction. Despite many proposed experimental solutions to mitigate sample drift, a universal solution has yet to be established. In response to this challenge, we developed 3D-Aligner, an advanced and user-friendly image analysis tool designed to computationally correct drift in ExM images for precise three-dimensional image reconstruction and downstream quantification. We demonstrate that 3D-Aligner effectively determines and corrects drift in ExM images with different expansion rates and various fluorescently labeled biological targets, showcasing its capabilities and robustness in drift correction. Additionally, we validate the precision of 3D-Aligner by comparing drift values across different labeled targets and highlight the importance of drift correction in quantification of biological structures.
扩展显微镜(ExM)是一种创新且具有成本效益的超分辨率显微镜技术,在细胞生物学研究中越来越受欢迎。它通过物理扩展样本实现超分辨率。自推出以来,ExM 经历了持续的方法学发展,以提高其分辨率和标记能力。然而,ExM 成像在图像采集过程中经常会遇到样本漂移,因为扩展水凝胶的物理运动,这对准确的图像重建构成了重大挑战。尽管已经提出了许多减轻样本漂移的实验解决方案,但尚未建立通用的解决方案。针对这一挑战,我们开发了 3D-Aligner,这是一款先进且用户友好的图像分析工具,旨在通过计算校正 ExM 图像中的漂移,以实现精确的三维图像重建和下游定量。我们证明了 3D-Aligner 可以有效地确定和校正具有不同扩展率和各种荧光标记生物靶标的 ExM 图像中的漂移,展示了其在漂移校正方面的功能和稳健性。此外,我们通过比较不同标记靶标之间的漂移值来验证 3D-Aligner 的精度,并强调漂移校正在生物结构定量中的重要性。