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通过长骨活体延时成像揭示老年早期造血祖细胞的细胞动力学改变及骨内膜定位。

Altered cellular dynamics and endosteal location of aged early hematopoietic progenitor cells revealed by time-lapse intravital imaging in long bones.

作者信息

Köhler Anja, Schmithorst Vince, Filippi Marie-Dominique, Ryan Marnie A, Daria Deidre, Gunzer Matthias, Geiger Hartmut

机构信息

Institute of Molecular and Clinical Immunology, Otto von Guericke University, Magdeburg, Germany.

出版信息

Blood. 2009 Jul 9;114(2):290-8. doi: 10.1182/blood-2008-12-195644. Epub 2009 Apr 8.

Abstract

Aged hematopoietic stem cells (HSCs) are impaired in supporting hematopoiesis. The molecular and cellular mechanisms of stem cell aging are not well defined. HSCs interact with nonhematopoietic stroma cells in the bone marrow forming the niche. Interactions of hematopoietic cells with the stroma/microenvironment inside bone cavities are central to hematopoiesis as they regulate cell proliferation, self-renewal, and differentiation. We recently hypothesized that one underlying cause of altered hematopoiesis in aging might be due to altered interactions of aged stem cells with the microenvironment/niche. We developed time-lapse 2-photon microscopy and novel image analysis algorithms to quantify the dynamics of young and aged hematopoietic cells inside the marrow of long bones of mice in vivo. We report in this study that aged early hematopoietic progenitor cells (eHPCs) present with increased cell protrusion movement in vivo and localize more distantly to the endosteum compared with young eHPCs. This correlated with reduced adhesion to stroma cells as well as reduced cell polarity upon adhesion of aged eHPCs. These data support a role of altered eHPC dynamics and altered cell polarity, and thus altered niche biology in mechanisms of mammalian aging.

摘要

衰老的造血干细胞(HSCs)在支持造血方面存在缺陷。干细胞衰老的分子和细胞机制尚未完全明确。造血干细胞与骨髓中的非造血基质细胞相互作用,形成了造血龛。造血细胞与骨髓腔内的基质/微环境之间的相互作用对于造血至关重要,因为它们调节细胞增殖、自我更新和分化。我们最近推测,衰老过程中造血功能改变的一个潜在原因可能是衰老干细胞与微环境/造血龛之间的相互作用发生了改变。我们开发了延时双光子显微镜和新颖的图像分析算法,以量化小鼠体内长骨骨髓中年轻和衰老造血细胞的动态变化。我们在本研究中报告,与年轻的早期造血祖细胞(eHPCs)相比,衰老的早期造血祖细胞在体内表现出细胞突起运动增加,并且定位离骨内膜更远。这与衰老的eHPCs对基质细胞的粘附减少以及粘附时细胞极性降低相关。这些数据支持了eHPCs动态变化改变和细胞极性改变,进而支持了在哺乳动物衰老机制中造血龛生物学改变所起的作用。

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