Mempel Thorsten R, Scimone M Lucila, Mora J Rodrigo, von Andrian Ulrich H
The CBR Institute for Biomedical Research and the Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Curr Opin Immunol. 2004 Aug;16(4):406-17. doi: 10.1016/j.coi.2004.05.018.
Selective recruitment of blood-borne leukocytes to tissues and their proper positioning within them is crucial for the many integrated functions of the immune system. Intravital microscopy (IVM) techniques have been employed for more than a century to study these events at the single-cell level in living animals. Conventional video-based IVM allows the visualization of extremely rapid adhesion events at the interface between blood and tissue. Multiphoton IVM is a relatively new tool for imaging the slower dynamics of cell migration and cell-cell interactions in the extravascular space in three dimensions. Fueled by the burgeoning development of sophisticated fluorescent markers and increasingly powerful imaging tools, we are currently witnessing the emergence of a new field in immuno-imaging, in which leukocyte function and cell-cell communication is explored in a truly physiological context.
选择性募集血源性白细胞至组织并使其在组织内正确定位,对于免疫系统的诸多整合功能至关重要。活体显微镜检查(IVM)技术已应用了一个多世纪,用于在活体动物的单细胞水平研究这些事件。传统的基于视频的IVM能够可视化血液与组织界面处极其快速的黏附事件。多光子IVM是一种相对较新的工具,用于三维成像血管外空间中细胞迁移和细胞间相互作用的较慢动态过程。在精密荧光标记物蓬勃发展以及成像工具日益强大的推动下,我们目前正见证免疫成像新领域的出现,该领域在真正的生理背景下探索白细胞功能和细胞间通讯。