Deep imaging of LepR+ stromal cells in optically cleared murine bone hemisections

IF 14.3 1区 医学 Q1 CELL & TISSUE ENGINEERING Bone Research Pub Date : 2025-01-13 DOI:10.1038/s41413-024-00387-9
Yuehan Ni, Jiamiao Wu, Fengqi Liu, Yating Yi, Xiangjiao Meng, Xiang Gao, Luyi Xiao, Weiwei Zhou, Zexi Chen, Peng Chu, Dan Xing, Ye Yuan, Donghui Ding, Ge Shen, Min Yang, Ronjie Wu, Ling Wang, Luiza Martins Nascentes Melo, Sien Lin, Xiaoguang Cheng, Gang Li, Alpaslan Tasdogan, Jessalyn M. Ubellacker, Hu Zhao, Shentong Fang, Bo Shen
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Abstract

Tissue clearing combined with high-resolution confocal imaging is a cutting-edge approach for dissecting the three-dimensional (3D) architecture of tissues and deciphering cellular spatial interactions under physiological and pathological conditions. Deciphering the spatial interaction of leptin receptor-expressing (LepR+) stromal cells with other compartments in the bone marrow is crucial for a deeper understanding of the stem cell niche and the skeletal tissue. In this study, we introduce an optimized protocol for the 3D analysis of skeletal tissues, enabling the visualization of hematopoietic and stromal cells, especially LepR+ stromal cells, within optically cleared bone hemisections. Our method preserves the 3D tissue architecture and is extendable to other hematopoietic sites such as calvaria and vertebrae. The protocol entails tissue fixation, decalcification, and cryosectioning to reveal the marrow cavity. Completed within approximately 12 days, this process yields highly transparent tissues that maintain genetically encoded or antibody-stained fluorescent signals. The bone hemisections are compatible with diverse antibody labeling strategies. Confocal microscopy of these transparent samples allows for qualitative and quantitative image analysis using Aivia or Bitplane Imaris software, assessing a spectrum of parameters. With proper storage, the fluorescent signal in the stained and cleared bone hemisections remains intact for at least 2–3 months. This protocol is robust, straightforward to implement, and highly reproducible, offering a valuable tool for tissue architecture and cellular interaction studies.

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LepR+基质细胞在光学清除的小鼠骨半切面的深度成像
组织清除结合高分辨率共聚焦成像是解剖组织三维(3D)结构和破译生理和病理条件下细胞空间相互作用的前沿方法。破译瘦素受体表达(LepR+)基质细胞与骨髓中其他区室的空间相互作用对于更深入地了解干细胞生态位和骨组织至关重要。在这项研究中,我们引入了一种优化的方案,用于骨骼组织的3D分析,使造血细胞和基质细胞,特别是LepR+基质细胞,在光学清除的骨半球切片中可视化。我们的方法保留了三维组织结构,并可扩展到其他造血部位,如颅骨和椎骨。该方案需要组织固定,脱钙和冷冻切片以显示骨髓腔。在大约12天内完成,该过程产生高度透明的组织,保持遗传编码或抗体染色的荧光信号。骨半球切片与多种抗体标记策略兼容。这些透明样品的共聚焦显微镜允许使用Aivia或Bitplane Imaris软件进行定性和定量图像分析,评估光谱参数。通过适当的保存,染色和清除的骨半切面中的荧光信号至少可以保持完整2-3个月。该协议是稳健的,易于实现,高度可重复性,为组织结构和细胞相互作用的研究提供了一个有价值的工具。
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来源期刊
Bone Research
Bone Research CELL & TISSUE ENGINEERING-
CiteScore
20.00
自引率
4.70%
发文量
289
审稿时长
20 weeks
期刊介绍: Established in 2013, Bone Research is a newly-founded English-language periodical that centers on the basic and clinical facets of bone biology, pathophysiology, and regeneration. It is dedicated to championing key findings emerging from both basic investigations and clinical research concerning bone-related topics. The journal's objective is to globally disseminate research in bone-related physiology, pathology, diseases, and treatment, contributing to the advancement of knowledge in this field.
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