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优化且详细的分步 protocol 用于分析高尔基染色胎羊脑神经元形态。

An Optimized and Detailed Step-by-Step Protocol for the Analysis of Neuronal Morphology in Golgi-Stained Fetal Sheep Brain.

机构信息

The Ritchie Centre, Hudson Institute of Medical Research, Translational Research Facility, Clayton, Victoria, Australia.

Department of Obstetrics and Gynaecology, Monash University, Clayton, Victoria, Australia.

出版信息

Dev Neurosci. 2022;44(4-5):344-362. doi: 10.1159/000524055. Epub 2022 Mar 11.

DOI:10.1159/000524055
PMID:35447627
Abstract

Antenatal brain development during the final trimester of human pregnancy is a time when mature neurons become increasingly complex in morphology, through axonal and dendritic outgrowth, dendritic branching, and synaptogenesis, together with myelin production. Characterizing neuronal morphological development over time is of interest to developmental neuroscience and provides the framework to measure gray matter pathology in pregnancy compromise. Neuronal microstructure can be assessed with Golgi staining, which selectively stains a small percentage (1-3%) of neurons and their entire dendritic arbor. Advanced imaging processing and analysis tools can then be employed to quantitate neuronal cytoarchitecture. Traditional Golgi-staining protocols have been optimized, and commercial kits are readily available offering improved speed and sensitivity of Golgi staining to produce consistent results. Golgi-stained tissue is then visualized under light microscopy and image analysis may be completed with several software programs for morphological analysis of neurons, including freeware and commercial products. Each program requires optimization, whether semiautomated or automated, requiring different levels of investigator intervention and interpretation, which is a critical consideration for unbiased analysis. Detailed protocols for fetal ovine brain tissue are lacking, and therefore, we provide a step-by-step workflow of computer software analysis for morphometric quantification of Golgi-stained neurons. Here, we utilized the commonly applied FD Rapid GolgiStain kit (FD NeuroTechnologies) on ovine fetal brains collected at 127 days (0.85) of gestational age for the analysis of CA1 pyramidal neurons in the hippocampus. We describe the step-by-step protocol to retrieve neuronal morphometrics using Imaris imaging software to provide quantification of apical and basal dendrites for measures of dendrite length (μm), branch number, branch order, and Sholl analysis (intersections over radius). We also detail software add-ons for data retrieval of dendritic spines including the number of spines, spine density, and spine classification, which are critical indicators of synaptic function. The assessment of neuronal morphology in the developing brain using Rapid-Golgi and Imaris software is labor-intensive, particularly during the optimization period. The methodology described in this step-by-step description is novel, detailed, and aims to provide a reproducible, working protocol to quantify neuronal cytoarchitecture with simple descriptions that will save time for the next users of these commonly used techniques.

摘要

人类妊娠末期的产前大脑发育是成熟神经元在形态上变得越来越复杂的时期,通过轴突和树突的生长、树突分支和突触形成以及髓鞘生成。随着时间的推移描述神经元形态发育是发育神经科学感兴趣的内容,并为衡量妊娠期间灰质病理学提供了框架。神经元的微观结构可以通过高尔基染色来评估,高尔基染色选择性地染色一小部分(1-3%)神经元及其整个树突树。然后可以使用高级成像处理和分析工具来定量神经元细胞结构。传统的高尔基染色方案已经得到优化,并且商业试剂盒可随时提供,从而提高高尔基染色的速度和灵敏度,以产生一致的结果。高尔基染色组织在光学显微镜下可视化,并且可以使用几种软件程序完成神经元形态分析的图像分析,包括免费和商业产品。每个程序都需要优化,无论是半自动还是自动,都需要不同程度的调查员干预和解释,这是进行无偏分析的关键考虑因素。缺乏胎儿绵羊脑组织的详细方案,因此,我们提供了一个用于形态计量学定量高尔基染色神经元的计算机软件分析的逐步工作流程。在这里,我们在 127 天(0.85)妊娠龄的胎儿绵羊脑中使用常用的 FD Rapid GolgiStain 试剂盒(FD NeuroTechnologies)分析海马 CA1 锥体神经元。我们描述了使用 Imaris 成像软件检索神经元形态计量学的逐步协议,以提供树突长度(μm)、分支数量、分支顺序和 Sholl 分析(半径上的交点)的测量值的树突的定量。我们还详细说明了用于获取树突棘数据的软件附加组件,包括棘突数量、棘突密度和棘突分类,这些都是突触功能的关键指标。使用 Rapid-Golgi 和 Imaris 软件评估发育中大脑中的神经元形态需要大量的劳动力,特别是在优化阶段。本逐步描述中描述的方法是新颖的、详细的,旨在提供一种可重复的、有效的工作方案,以使用简单的描述来量化神经元细胞结构,为这些常用技术的下一任用户节省时间。

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