Turk Madison, Naumenko Victor, Mahoney Douglas J, Jenne Craig N
Department of Microbiology, Immunology and Infectious Diseases, Faculty of Medicine, University of Calgary, Calgary, AB T2N 4N1, Canada.
National University of Science and Technology "MISIS", Leninskiy Prospect 4, 119991 Moscow, Russia.
Cells. 2018 Jul 3;7(7):69. doi: 10.3390/cells7070069.
Recent advances in imaging technology have made it possible to track cellular recruitment and behavior within the vasculature of living animals in real-time. Using approaches such as resonant scanning confocal and multiphoton intravital microscopy (IVM), we are now able to observe cells within the intact tumor microenvironment of a mouse. We are able to follow these cells for extended periods of time (hours) and can characterize how specific cell types (T cells, neutrophils, monocytes) interact with the tumor vasculature and cancer cells. This approach provides greater insight into specific cellular behaviors and cell⁻cell interactions than conventional techniques such as histology and flow cytometry. In this report, we describe the surgical preparation of animals to expose the tumor and both resonant scanning confocal and multiphoton imaging approaches used to track leukocyte recruitment, adhesion, and behavior within the tumor microenvironment. We present techniques for the measurement and quantification of leukocyte behavior within the bloodstream and tumor interstitium. The use of IVM to study leukocyte behavior within the tumor microenvironment provides key information not attainable with other approaches, that will help shape the development of better, more effective anticancer drugs and therapeutic approaches.
成像技术的最新进展使得实时追踪活体动物血管系统内的细胞募集和行为成为可能。通过使用共振扫描共聚焦和多光子活体显微镜(IVM)等方法,我们现在能够在小鼠完整的肿瘤微环境中观察细胞。我们能够长时间(数小时)追踪这些细胞,并能够描述特定细胞类型(T细胞、中性粒细胞、单核细胞)如何与肿瘤血管系统和癌细胞相互作用。与组织学和流式细胞术等传统技术相比,这种方法能更深入地了解特定的细胞行为和细胞间相互作用。在本报告中,我们描述了用于暴露肿瘤的动物手术准备过程,以及用于追踪肿瘤微环境中白细胞募集、黏附和行为的共振扫描共聚焦和多光子成像方法。我们介绍了测量和量化血流及肿瘤间质中白细胞行为的技术。利用IVM研究肿瘤微环境中的白细胞行为提供了其他方法无法获得的关键信息,这将有助于更好、更有效地开发抗癌药物和治疗方法。