免疫荧光
免疫系统
病理
显微镜
生物医学工程
细胞生物学
荧光显微镜
荧光寿命成像显微镜
生物
限制
解剖
天然组织
高分辨率
淋巴系统
相衬显微术
人类血液
共焦显微镜
化学
分子成像
细胞
亚细胞定位
抗体
计算生物学
间接免疫荧光
薄层荧光显微镜
仿形(计算机编程)
冰冻切片程序
作者
Alex Yu Hin Wong,Y. Lu,Ziyuan Zhao,Felix Zhou,Hojeong Park,Zoltan Maliga,Yvonne Anang,Shannon Coy,Gaudenz Danuser,Sandro Santagata,Clarence Yapp,Peter Karl Sorger
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2026-05-20
标识
DOI:10.64898/2026.05.17.725158
摘要
The tissue-resident immune system involves complex 3D assemblies that interact with extended structures such as blood vessels and nerves. These interactions are difficult to study using conventional 2D profiling because they span many tissue sections. In animal tissues, volumetric imaging approaches such as light-sheet fluorescence microscopy (LSFM) are widely used to study 3D tissue organization, with labelling often aided by genetically encoded reporters and vascular dyes. In contrast, LSFM of human specimens remains underdeveloped because most clinical samples are available only as formalin-fixed paraffin-embedded (FFPE) tissue, limiting labeling strategies primarily to dyes and antibodies. Here, we present a volumetric cyclic immunofluorescence (v-CyCIF) and virtual H&E toolbox that overcomes key barriers to multiplexed imaging of immune cells and nerves in human specimens up to 1 mm thick. We use v-CyCIF to study neuroimmune interactions in normal and cancer tissues and to immunoprofile intact secondary and tertiary lymphoid structures. Re-embedding and sectioning of specimens following volumetric imaging enables high-plex high-resolution analysis of subcellular structures and cell-cell interactions associated with immune cell activity. v-CyCIF therefore provides a flexible framework for multi-scale 3D profiling of clinical specimens across imaging formats and resolutions.
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