Science for Life Laboratory, Department of Applied Physics, Royal Institute of Technology, Solna, Sweden; Department II of Internal Medicine and Center for Molecular Medicine Cologne, University of Cologne, Cologne, Germany; Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases, University of Cologne, Cologne, Germany.
Department II of Internal Medicine and Center for Molecular Medicine Cologne, University of Cologne, Cologne, Germany.
Kidney Int. 2021 Apr;99(4):1010-1020. doi: 10.1016/j.kint.2020.10.039. Epub 2020 Dec 5.
In recent years, many light-microscopy protocols have been published for visualization of nanoscale structures in the kidney. These protocols present researchers with new tools to evaluate both foot process anatomy and effacement, as well as protein distributions in foot processes, the slit diaphragm and in the glomerular basement membrane. However, these protocols either involve the application of different complicated super resolution microscopes or lengthy sample preparation protocols. Here, we present a fast and simple, five-hour long procedure for three-dimensional visualization of kidney morphology on all length scales. The protocol combines optical clearing and tissue expansion concepts to produce a mild swelling, sufficient for resolving nanoscale structures using a conventional confocal microscope. We show that the protocol can be applied to visualize a wide variety of pathologic features in both mouse and human kidneys. Thus, our fast and simple protocol can be beneficial for conventional microscopic evaluation of kidney tissue integrity both in research and possibly in future clinical routines.
近年来,许多用于观察肾脏纳米级结构的光学显微镜方案已经发表。这些方案为研究人员提供了新的工具,用于评估足突的形态和融合,以及足突、裂孔隔膜和肾小球基底膜中蛋白质的分布。然而,这些方案要么涉及应用不同的复杂超分辨率显微镜,要么涉及冗长的样本制备方案。在这里,我们提出了一种快速而简单的方案,可在所有长度尺度上对肾脏形态进行三维可视化,耗时仅 5 小时。该方案结合了光学透明化和组织扩展的概念,产生轻微的肿胀,足以使用常规共聚焦显微镜来解析纳米级结构。我们表明,该方案可应用于观察小鼠和人肾脏中的多种病理特征。因此,我们的快速简单方案可有助于对肾脏组织完整性进行常规显微镜评估,无论是在研究中还是未来的临床常规中都可能有用。