Howard Hughes Medical Institute, Department of Genetic Medicine, Weill Cornell Medical College, New York, NY 10065, USA.
Cell Stem Cell. 2010 Mar 5;6(3):251-64. doi: 10.1016/j.stem.2010.02.001.
Bone marrow endothelial cells (ECs) are essential for reconstitution of hematopoiesis, but their role in self-renewal of long-term hematopoietic stem cells (LT-HSCs) is unknown. We have developed angiogenic models to demonstrate that EC-derived angiocrine growth factors support in vitro self-renewal and in vivo repopulation of authentic LT-HSCs. In serum/cytokine-free cocultures, ECs, through direct cellular contact, stimulated incremental expansion of repopulating CD34(-)Flt3(-)cKit(+)Lineage(-)Sca1(+) LT-HSCs, which retained their self-renewal ability, as determined by single-cell and serial transplantation assays. Angiocrine expression of Notch ligands by ECs promoted proliferation and prevented exhaustion of LT-HSCs derived from wild-type, but not Notch1/Notch2-deficient, mice. In transgenic notch-reporter (TNR.Gfp) mice, regenerating TNR.Gfp(+) LT-HSCs were detected in cellular contact with sinusoidal ECs. Interference with angiocrine, but not perfusion, function of SECs impaired repopulation of TNR.Gfp(+) LT-HSCs. ECs establish an instructive vascular niche for clinical-scale expansion of LT-HSCs and a cellular platform to identify stem cell-active trophogens.
骨髓内皮细胞(ECs)对于造血重建至关重要,但它们在长期造血干细胞(LT-HSCs)自我更新中的作用尚不清楚。我们开发了血管生成模型,以证明 EC 衍生的血管生成因子支持体外自我更新和体内真实 LT-HSCs 的再群体化。在无血清/细胞因子的共培养物中,EC 通过直接细胞接触刺激具有再群体化能力的 CD34(-)Flt3(-)cKit(+)Lineage(-)Sca1(+) LT-HSCs 的递增扩增,这些细胞保持其自我更新能力,这可通过单细胞和连续移植测定来确定。EC 中 Notch 配体的血管生成表达促进了 LT-HSCs 的增殖并防止了源自野生型但不是 Notch1/Notch2 缺陷型小鼠的 LT-HSCs 的衰竭。在转基因 notch 报告基因(TNR.Gfp)小鼠中,在与窦状内皮细胞的细胞接触中检测到再生的 TNR.Gfp(+) LT-HSCs。干扰 SEC 的血管生成功能,而不是灌注功能,会损害 TNR.Gfp(+) LT-HSCs 的再群体化。EC 为 LT-HSCs 的临床规模扩增建立了一个有指导意义的血管生态位,并为鉴定干细胞活性营养因子提供了一个细胞平台。