Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, 4710-057 Braga, Portugal.
ICVS/3B's-PT Government Associate Laboratory, 4710-057 Braga/Guimarães, Portugal.
Cells. 2024 Jun 3;13(11):969. doi: 10.3390/cells13110969.
Astrocytes are ubiquitous in the brain and spinal cord and display a complex morphology important for the local interactions with neighboring cells, resulting in the modulation of circuit function. Thus, studies focusing on astrocyte physiology in the healthy and diseased brain generally present analyses of astrocytic structure. The labeling method used to visualize the astrocytic structure defines the morphological level to observe and may vary depending on the anatomical sub-regions. The method choice may significantly affect our understanding of their structural diversity. The main goal of this work was to identify a straightforward and efficient protocol for labeling and reconstructing a detailed astrocytic structure to apply and validate in different brain tissue preparations across laboratories. For that, we explored different tissue processing protocols before GFAP labeling to determine the most effective method for reconstructing astrocytic backbones in the mouse hippocampus. Our results show that the reconstruction of astrocytic structure in vibratome sections labeled by free-floating immunofluorescence protocol provides a more practical method to achieve a higher level of detail and arbor complexity in astrocyte backbone reconstruction. Free-floating immunofluorescence labeling is the most reliable method for obtaining better antibody penetration and more detailed astrocyte structure. Finally, we also show that introducing an antigen retrieval step appears useful for visualizing more complete structural details.
星形胶质细胞广泛存在于大脑和脊髓中,具有复杂的形态,对于与邻近细胞的局部相互作用很重要,从而调节回路功能。因此,专注于健康和患病大脑中星形胶质细胞生理学的研究通常会对星形胶质细胞结构进行分析。用于可视化星形胶质细胞结构的标记方法定义了要观察的形态学水平,并且可能因解剖亚区而异。方法的选择可能会显著影响我们对其结构多样性的理解。这项工作的主要目标是确定一种简单有效的标记和重建详细星形胶质细胞结构的方案,以便在不同的实验室脑组织准备中应用和验证。为此,我们在 GFAP 标记之前探索了不同的组织处理方案,以确定在小鼠海马体中重建星形胶质细胞骨干的最有效方法。我们的结果表明,通过游离免疫荧光方案标记的振动切片中的星形胶质细胞结构重建提供了一种更实用的方法,可以在星形胶质细胞骨干重建中实现更高水平的细节和分支复杂性。游离免疫荧光标记是获得更好的抗体渗透和更详细的星形胶质细胞结构的最可靠方法。最后,我们还表明,引入抗原修复步骤对于可视化更完整的结构细节似乎很有用。