Gottschling Sandra, Saffrich Rainer, Seckinger Anja, Krause Ulf, Horsch Kerstin, Miesala Katrin, Ho Anthony D
Department of Medicine V, Ruprecht-Karls University of Heidelberg, Im Neuenheimer Feld 410, 69120 Heidelberg, Germany.
Stem Cells. 2007 Mar;25(3):798-806. doi: 10.1634/stemcells.2006-0513. Epub 2006 Nov 16.
In previous reports, we have demonstrated that only direct cell-cell contact with stromal cells, such as the murine stromal cell line AFT024, was able to alter the cell division kinetics and self-renewing capacity of hematopoietic progenitor cells (HPC). Because beta(1)-integrins were shown to be crucial for the interaction of HPC with the bone marrow microenvironment, we have studied the role of beta(1)-integrins in the regulation of self-renewing cell divisions. For this purpose, we used primary human mesenchymal stromal (MS) cells as in vitro surrogate niche and monitored the division history and subsequent functional fate of individually plated CD34(+)133(+) cells in the absence or presence of an anti-beta(1)-integrin blocking antibody by time-lapse microscopy and subsequent long-term culture-initiating cell (LTC-IC) assays. beta(1)-Integrin-mediated contact with MS cells significantly increased the proportion of asymmetrically dividing cells and led to a substantial increase of LTC-IC. Provided that beta(1)-integrin-mediated contact was available within the first 72 hours, human MS cells were able to recruit HPC into cell cycle and accelerate their division kinetics without loss of stem cell function. Activation of beta(1)-integrins by ligands alone (e.g., fibronectin and vascular cell adhesion molecule-1) was not sufficient to alter the cell division symmetry and promote self-renewal of HPC, thus indicating an indirect effect. These results have provided evidence that primary human MS cells are able to induce self-renewing divisions of HPC by a beta(1)-integrin-dependent mechanism.
在先前的报告中,我们已经证明,只有与基质细胞进行直接的细胞间接触,比如小鼠基质细胞系AFT024,才能改变造血祖细胞(HPC)的细胞分裂动力学和自我更新能力。由于β1整合素已被证明对HPC与骨髓微环境的相互作用至关重要,我们研究了β1整合素在自我更新细胞分裂调控中的作用。为此,我们使用原代人骨髓间充质基质(MS)细胞作为体外替代龛位,并通过延时显微镜和随后的长期培养起始细胞(LTC-IC)分析,监测单独接种的CD34(+)133(+)细胞在存在或不存在抗β1整合素阻断抗体的情况下的分裂历史和随后的功能命运。β1整合素介导的与MS细胞的接触显著增加了不对称分裂细胞的比例,并导致LTC-IC大量增加。如果在最初的72小时内有β1整合素介导的接触,人MS细胞能够将HPC募集到细胞周期中并加速其分裂动力学,而不会丧失干细胞功能。仅通过配体(如纤连蛋白和血管细胞黏附分子-1)激活β1整合素不足以改变细胞分裂对称性并促进HPC的自我更新,因此表明这是一种间接效应。这些结果提供了证据,证明原代人MS细胞能够通过β1整合素依赖性机制诱导HPC的自我更新分裂。