光片荧光显微镜对lps处理小鼠小胶质细胞的三维成像和病理分析。

IF 2.9 4区 医学 Q3 IMMUNOLOGY
Renjie Liu , Jianbo Xiu
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引用次数: 0

摘要

虽然二维(2D)组织学和免疫组织化学技术早已建立并成功地应用于从组织中获取结构信息,但最近在组织清除和扩展方法与薄层显微镜相结合的进展导致了三维(3D)无损病理学的实现,这可能会彻底改变我们对器官或整个身体真实状态的形态学知识。利用这些三维技术,我们获得了小鼠全海马小胶质细胞的成像数据。我们利用商业软件Amira建立了一个简单的程序来分析小胶质细胞的三维结构。测量了细胞整体体积、胞体体积、Feret最大/最小直径、总分支数、分形维数、凸壳数、交点数等主要三维结构参数。我们发现脂多糖处理明显改变了小胶质细胞的多个三维形态学参数。小胶质细胞结构的三维分析提供了比二维分析更全面的评价,可用于未来的神经科学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

3D imaging and pathological analysis of microglia in LPS-treated mice with light-sheet fluorescence microscopy

3D imaging and pathological analysis of microglia in LPS-treated mice with light-sheet fluorescence microscopy
Although two-dimensional (2D) histology and immunohistochemistry techniques have long been established and successfully applied to obtain structural information from tissues, recent advances in tissue clearing and expansion approaches combined with light sheet microscopy have led to the realization of three-dimensional (3D) nondestructive pathology, which may revolutionize our knowledge of the morphology of an organ or the whole body in its true state. Employing these 3D technologies, we obtained imaging data of microglia in whole hippocampus of mice. We established a simple procedure to analyze the 3D structures of microglia using the commercial software Amira. Major 3D structural parameters, including the volume of the whole cell, volume of the cell body, Feret's maximum/minimum diameter, number of total branches, fractal dimension, convex hull, and number of intersections,were measured. We found that lipopolysaccharide administration markedly changed multiple 3D morphological parameters of microglia. 3D analysis of microglial structures provides a more comprehensive evaluation than 2D analysis, which can be applied in future neuroscience research.
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来源期刊
Journal of neuroimmunology
Journal of neuroimmunology 医学-免疫学
CiteScore
6.10
自引率
3.00%
发文量
154
审稿时长
37 days
期刊介绍: The Journal of Neuroimmunology affords a forum for the publication of works applying immunologic methodology to the furtherance of the neurological sciences. Studies on all branches of the neurosciences, particularly fundamental and applied neurobiology, neurology, neuropathology, neurochemistry, neurovirology, neuroendocrinology, neuromuscular research, neuropharmacology and psychology, which involve either immunologic methodology (e.g. immunocytochemistry) or fundamental immunology (e.g. antibody and lymphocyte assays), are considered for publication.
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