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血管微环境对造血干细胞命运的影响。

Influences of vascular niches on hematopoietic stem cell fate.

作者信息

Kunisaki Yuya, Frenette Paul S

机构信息

Ruth L. and David S. Gottesman Institute for Stem Cell and Regenerative Medicine Research, Bronx, NY, 10461, USA,

出版信息

Int J Hematol. 2014 Jun;99(6):699-705. doi: 10.1007/s12185-014-1580-4. Epub 2014 Apr 23.

Abstract

The fate decision of hematopoietic stem cells (HSCs), quiescence, proliferation or differentiation, is uniquely determined by functionally specialized microenvironments defined as the HSC niches. However, whether quiescence and proliferation of HSCs are regulated by spatially distinct niches is unclear. Although various candidate stromal cells have been identified as potential niche cells, the spatial localization of quiescent HSCs in the bone marrow remains controversial. In our recent study, we have established whole-mount confocal immunofluorescence techniques, which allow us to precisely assess the localization of HSCs and their relationships with stromal structures. Furthermore, we have assessed the significance of these associations using a computational simulation. These novel analyses have revealed that quiescent HSCs are specifically associated with small caliber arterioles, which are predominantly distributed in the endosteal bone marrow while the associations with sinusoidal vessels or osteoblasts are not significant. Physical ablation of the arteriolar niche causes the shift of HSC localization to sinusoidal niches, where HSCs are switched into non-quiescent status. This new imaging analyses together with previous studies suggest the presence of spatially distinct vascular niches for quiescent and non-quiescent (proliferating) HSCs in the bone marrow.

摘要

造血干细胞(HSCs)的命运抉择,即静止、增殖或分化,由定义为造血干细胞龛的功能特化微环境独特地决定。然而,造血干细胞的静止和增殖是否受空间上不同的龛调控尚不清楚。尽管已鉴定出各种候选基质细胞作为潜在的龛细胞,但骨髓中静止造血干细胞的空间定位仍存在争议。在我们最近的研究中,我们建立了全组织共聚焦免疫荧光技术,这使我们能够精确评估造血干细胞的定位及其与基质结构的关系。此外,我们使用计算模拟评估了这些关联的意义。这些新颖的分析表明,静止造血干细胞与小口径小动脉特异性相关,小口径小动脉主要分布在内皮质骨髓中,而与窦状血管或成骨细胞的关联并不显著。小动脉龛的物理消融导致造血干细胞定位转移至窦状龛,在那里造血干细胞转变为非静止状态。这种新的成像分析与先前的研究共同表明,骨髓中存在针对静止和非静止(增殖)造血干细胞的空间上不同的血管龛。

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