Palomino-Segura Miguel, Virgilio Tommaso, Morone Diego, Pizzagalli Diego U, Gonzalez Santiago F
Faculty of Biomedical Sciences, Institute for Research in Biomedicine, Università della Svizzera italiana (USI); Graduate School of Cellular and Molecular Sciences, Faculty of Medicine, University of Bern.
Faculty of Biomedical Sciences, Institute for Research in Biomedicine, Università della Svizzera italiana (USI).
J Vis Exp. 2018 Aug 17(138):58355. doi: 10.3791/58355.
The analysis of cell-cell or cell-pathogen interaction in vivo is an important tool to understand the dynamics of the immune response to infection. Two-photon intravital microscopy (2P-IVM) allows the observation of cell interactions in deep tissue in living animals, while minimizing the photobleaching generated during image acquisition. To date, different models for 2P-IVM of lymphoid and non-lymphoid organs have been described. However, imaging of respiratory organs remains a challenge due to the movement associated with the breathing cycle of the animal. Here, we describe a protocol to visualize in vivo immune cell interactions in the trachea of mice infected with influenza virus using 2P-IVM. To this purpose, we developed a custom imaging platform, which included the surgical exposure and intubation of the trachea, followed by the acquisition of dynamic images of neutrophils and dendritic cells (DC) in the mucosal epithelium. Additionally, we detailed the steps needed to perform influenza intranasal infection and flow cytometric analysis of immune cells in the trachea. Finally, we analyzed neutrophil and DC motility as well as their interactions during the course of a movie. This protocol allows for the generation of stable and bright 4D images necessary for the assessment of cell-cell interactions in the trachea.
体内细胞间或细胞与病原体相互作用的分析是理解感染免疫反应动态的重要工具。双光子活体显微镜(2P-IVM)能够在活体动物的深部组织中观察细胞相互作用,同时将图像采集过程中产生的光漂白降至最低。迄今为止,已经描述了用于淋巴器官和非淋巴器官2P-IVM的不同模型。然而,由于与动物呼吸周期相关的运动,呼吸器官的成像仍然是一个挑战。在此,我们描述了一种使用2P-IVM可视化感染流感病毒的小鼠气管内体内免疫细胞相互作用的方案。为此,我们开发了一个定制的成像平台,包括气管的手术暴露和插管,随后采集黏膜上皮中中性粒细胞和树突状细胞(DC)的动态图像。此外,我们详细介绍了进行流感病毒鼻内感染和气管内免疫细胞流式细胞术分析所需的步骤。最后,我们分析了电影过程中中性粒细胞和DC的运动及其相互作用。该方案能够生成评估气管内细胞间相互作用所需的稳定且明亮的4D图像。