Li Xiao-Miao, Hu Zhongbo, Jorgenson Marda L, Slayton William B
Department of Pediatrics, University of Florida, Gainesville, FL, USA.
Circulation. 2009 Nov 10;120(19):1910-8. doi: 10.1161/CIRCULATIONAHA.109.871574. Epub 2009 Oct 26.
The bone marrow contains a variety of blood vessels that have different functions in bone marrow maintenance and hematopoiesis. Arterioles control the flow of blood into bone marrow compartments, and sinusoids serve as a conduit to the bloodstream and as niches for megakaryocyte development. Most studies of bone marrow vasculature, including studies quantifying changes in the marrow vascular by microvascular density, do not differentiate between different types of marrow vessels. Recognizing changes in different types of blood vessels after chemotherapy exposure or during leukemia development has important physiological implications. We hypothesized that the functional heterogeneity of marrow vasculature could be recognized through the use of functional markers such as tyrosine kinase with immunoglobulin and epidermal growth factor homology domains-2 (Tie2) expression or 1,1-dioctadecyl -3,3,3,3-tetramethyl-indocarbocyanine perchlorate with acetylated low-density lipoprotein (DiI-Ac-LDL) uptake.
When transgenic mice with green fluorescent protein (GFP) expressed downstream of the Tie2 promoter were injected with Ac-LDL, Ac-LDL was specifically endocytosed by sinusoids, and Tie2 expression was more pronounced in the arteries, arterioles, and transitional capillaries. Combining these 2 functional endothelial markers and using confocal microscopy to obtain 3-dimensional images, we identified transitional zones where arterioles emptied into the sinusoids. Alternatively, coinjection of lectin with DiI-Ac-LDL has a similar result in normal mice, as seen in Tie2/GFP mice, and can be used to differentiate vessel types in nontransgenic mice.
These results demonstrate that bone marrow vasculature is functionally heterogeneous. Methods to study changes in the marrow vasculature using microvascular density or quantifying changes in the vascular niche need to take this heterogeneity into account.
骨髓包含多种血管,这些血管在骨髓维持和造血过程中具有不同功能。小动脉控制血液流入骨髓腔室,而血窦作为血液的通道以及巨核细胞发育的微环境。大多数关于骨髓血管系统的研究,包括通过微血管密度量化骨髓血管变化的研究,都没有区分不同类型的骨髓血管。认识化疗暴露后或白血病发展过程中不同类型血管的变化具有重要的生理意义。我们假设可以通过使用功能标记物,如具有免疫球蛋白和表皮生长因子同源结构域 -2(Tie2)表达或1,1 - 二油酰基 -3,3,3,3 - 四甲基吲哚碳菁高氯酸盐与乙酰化低密度脂蛋白(DiI - Ac - LDL)摄取,来识别骨髓血管系统的功能异质性。
当向Tie2启动子下游表达绿色荧光蛋白(GFP)的转基因小鼠注射Ac - LDL时,Ac - LDL被血窦特异性内吞,并且Tie2表达在动脉、小动脉和过渡性毛细血管中更为明显。结合这两种功能性内皮标记物并使用共聚焦显微镜获得三维图像,我们确定了小动脉排空进入血窦的过渡区域。另外,在正常小鼠中,凝集素与DiI - Ac - LDL的共同注射产生了与Tie2 / GFP小鼠类似的结果,可用于区分非转基因小鼠中的血管类型。
这些结果表明骨髓血管系统在功能上是异质的。使用微血管密度研究骨髓血管系统变化或量化血管微环境变化的方法需要考虑到这种异质性。