Jung Yookyung, Spencer Joel A, Raphael Anthony P, Wu Juwell W, Alt Clemens, Runnels Judith R, Geiger Briaira, Lin Charles P
Center for Systems Biology and Wellman Center for Photomedicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.
Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science (IBS), Seoul, Republic of Korea.
Methods Mol Biol. 2018;1763:11-22. doi: 10.1007/978-1-4939-7762-8_2.
The bone marrow is a unique microenvironment where blood cells are produced and released into the circulation. At the top of the blood cell lineage are the hematopoietic stem cells (HSC), which are thought to reside in close association with the bone marrow vascular endothelial cells (Morrison and Scadden, Nature 505:327-334, 2014). Recent efforts at characterizing the HSC niche have prompted us to make close examinations of two distinct types of blood vessel in the bone marrow, the arteriolar vessels originating from arteries and sinusoidal vessels connected to veins. We found the two vessel types to exhibit different vascular permeabilites, hemodynamics, cell trafficking behaviors, and oxygen content (Itkin et al., Nature 532:323-328, 2016; Spencer et al., Nature 508:269-273, 2014). Here, we describe a method to quantitatively measure the permeability and hemodynamics of arterioles and sinusoids in murine calvarial bone marrow using intravital microscopy.
骨髓是一个独特的微环境,血细胞在此产生并释放到循环系统中。血细胞谱系的顶端是造血干细胞(HSC),人们认为它们与骨髓血管内皮细胞紧密相连(莫里森和斯卡登,《自然》505:327 - 334,2014年)。最近对造血干细胞生态位进行表征的努力促使我们仔细研究骨髓中两种不同类型的血管,即源自动脉的小动脉血管和连接到静脉的窦状血管。我们发现这两种血管类型表现出不同的血管通透性、血流动力学、细胞运输行为和氧含量(伊特金等人,《自然》532:323 - 328,2016年;斯宾塞等人,《自然》508:269 - 273,2014年)。在此,我们描述一种使用活体显微镜定量测量小鼠颅骨骨髓中小动脉和血窦的通透性及血流动力学的方法。