Photonics Group, Physics Department, Imperial College London, London, UK.
Imperial College London Photonics Satellite Laboratory, Francis Crick Institute, London, UK.
J Pathol Clin Res. 2021 Sep;7(5):438-445. doi: 10.1002/cjp2.217. Epub 2021 May 21.
Electron microscopy (EM) following immunofluorescence (IF) imaging is a vital tool for the diagnosis of human glomerular diseases, but the implementation of EM is limited to specialised institutions and it is not available in many countries. Recent progress in fluorescence microscopy now enables conventional widefield fluorescence microscopes to be adapted at modest cost to provide resolution below 50 nm in biological specimens. We show that stochastically switched single-molecule localisation microscopy can be applied to clinical histological sections stained with standard IF techniques and that such super-resolved IF may provide an alternative means to resolve ultrastructure to aid the diagnosis of kidney disease where EM is not available. We have implemented the direct stochastic optical reconstruction microscopy technique with human kidney biopsy frozen sections stained with clinically approved immunofluorescent probes for the basal laminae and immunoglobulin G deposits. Using cases of membranous glomerulonephritis, thin basement membrane lesion, and lupus nephritis, we compare this approach to clinical EM images and demonstrate enhanced imaging compared to conventional IF microscopy. With minor modifications in established IF protocols of clinical frozen renal biopsies, we believe the cost-effective adaptation of conventional widefield microscopes can be widely implemented to provide super-resolved image information to aid diagnosis of human glomerular disease.
免疫荧光(IF)成像后的电子显微镜(EM)检查是诊断人类肾小球疾病的重要工具,但 EM 的实施仅限于专门的机构,并且在许多国家都无法获得。荧光显微镜的最新进展使得传统的宽场荧光显微镜能够以适度的成本进行改装,从而在生物样本中提供低于 50nm 的分辨率。我们表明,随机切换单分子定位显微镜可以应用于用标准 IF 技术染色的临床组织学切片,并且这种超分辨 IF 可能提供另一种方法来解析超微结构,以帮助在无法进行 EM 检查的情况下诊断肾脏疾病。我们已经在用人肾活检冷冻切片上实施了直接随机光学重建显微镜技术,这些切片用临床批准的用于基底膜和免疫球蛋白 G 沉积物的免疫荧光探针进行了染色。使用膜性肾小球肾炎、薄基底膜病变和狼疮性肾炎的病例,我们将这种方法与临床 EM 图像进行了比较,并证明与传统 IF 显微镜相比,该方法具有增强的成像效果。通过对临床冷冻肾活检中的 IF 协议进行微小修改,我们相信可以广泛实施具有成本效益的传统宽场显微镜的改装,以提供超分辨率的图像信息,从而帮助诊断人类肾小球疾病。