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利用高分辨率氦离子扫描显微镜重新表征 CD2AP 缺陷小鼠的肾小球病变。

Re-characterization of the Glomerulopathy in CD2AP Deficient Mice by High-Resolution Helium Ion Scanning Microscopy.

机构信息

Center for Systems Biology, Program in Membrane Biology and Division of Nephrology, Department of Medicine, Massachusetts General Hospital, and Harvard Medical School, Boston, MA, USA.

Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, MO, USA.

出版信息

Sci Rep. 2017 Aug 16;7(1):8321. doi: 10.1038/s41598-017-08304-3.

Abstract

Helium ion scanning microscopy (HIM) is a novel technology that directly visualizes the cell surface ultrastructure without surface coating. Despite its very high resolution, it has not been applied extensively to study biological or pathology samples. Here we report the application of this powerful technology to examine the three-dimensional ultrastructural characteristics of proteinuric glomerulopathy in mice with CD2-associated protein (CD2AP) deficiency. HIM revealed the serial alteration of glomerular features including effacement and disorganization of the slit diaphragm, followed by foot process disappearance, flattening and fusion of major processes, and eventual transformation into a podocyte sheet as the disease progressed. The number and size of the filtration slit pores decreased. Strikingly, numerous "bleb" shaped microprojections were observed extending from podocyte processes and cell body, indicating significant membrane dynamics accompanying CD2AP deficiency. Visualizing the glomerular endothelium and podocyte-endothelium interface revealed the presence of endothelial damage, and disrupted podocyte and endothelial integrity in 6 week-old Cd2ap-KO mice. We used the HIM technology to investigate at nanometer scale resolution the ultrastructural alterations of the glomerular filtration apparatus in mice lacking the critical slit diaphragm-associated protein CD2AP, highlighting the great potential of HIM to provide new insights into the biology and (patho)physiology of glomerular diseases.

摘要

氦离子扫描显微镜(HIM)是一种新颖的技术,可在不进行表面涂层的情况下直接观察细胞表面超微结构。尽管它具有非常高的分辨率,但尚未广泛应用于研究生物或病理学样本。在这里,我们报告了这项强大技术的应用,以检查 CD2 相关蛋白(CD2AP)缺陷小鼠蛋白尿性肾小球病的三维超微结构特征。HIM 揭示了肾小球特征的连续变化,包括裂孔隔膜的消失和紊乱,随后是足突消失、主要突起的扁平化和融合,以及最终随着疾病的进展转化为足细胞片。滤过缝孔的数量和大小减少。值得注意的是,观察到大量“泡”状微突起从足细胞突起和细胞体延伸出来,表明在 CD2AP 缺乏时伴随着显著的膜动力学。可视化肾小球内皮和足细胞-内皮界面显示内皮损伤和 6 周龄 Cd2ap-KO 小鼠中足细胞和内皮完整性的破坏。我们使用 HIM 技术以纳米级分辨率研究缺乏关键裂孔隔膜相关蛋白 CD2AP 的小鼠肾小球滤过装置的超微结构改变,突出了 HIM 提供对肾小球疾病生物学和(病理)生理学新见解的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a982/5559584/9e45fcd361dc/41598_2017_8304_Fig1_HTML.jpg

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