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Endothelial cells are essential for the self-renewal and repopulation of Notch-dependent hematopoietic stem cells.内皮细胞对于 Notch 依赖性造血干细胞的自我更新和再群体化至关重要。
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Angiocrine factors from Akt-activated endothelial cells balance self-renewal and differentiation of haematopoietic stem cells.Akt 激活的内皮细胞来源的血管生成因子平衡造血干细胞的自我更新和分化。
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本文引用的文献

1
Instructive role of the vascular niche in promoting tumour growth and tissue repair by angiocrine factors.血管生态位通过血管生成因子在促进肿瘤生长和组织修复中的指导作用。
Nat Rev Cancer. 2010 Feb;10(2):138-46. doi: 10.1038/nrc2791.
2
Engraftment and reconstitution of hematopoiesis is dependent on VEGFR2-mediated regeneration of sinusoidal endothelial cells.造血的植入和重建依赖于VEGFR2介导的窦状内皮细胞再生。
Cell Stem Cell. 2009 Mar 6;4(3):263-74. doi: 10.1016/j.stem.2009.01.006.
3
Generation of a functional and durable vascular niche by the adenoviral E4ORF1 gene.腺病毒E4ORF1基因生成功能性且持久的血管微环境
Proc Natl Acad Sci U S A. 2008 Dec 9;105(49):19288-93. doi: 10.1073/pnas.0805980105. Epub 2008 Nov 26.
4
A notch1 ectodomain construct inhibits endothelial notch signaling, tumor growth, and angiogenesis.一种Notch1胞外结构域构建体可抑制内皮细胞Notch信号传导、肿瘤生长和血管生成。
Cancer Res. 2008 Jun 15;68(12):4727-35. doi: 10.1158/0008-5472.CAN-07-6499.
5
Tumor necrosis factor-alpha and endothelial cells modulate Notch signaling in the bone marrow microenvironment during inflammation.在炎症过程中,肿瘤坏死因子-α和内皮细胞调节骨髓微环境中的Notch信号通路。
Exp Hematol. 2008 May;36(5):545-558. doi: 10.1016/j.exphem.2007.12.012.
6
Canonical notch signaling is dispensable for the maintenance of adult hematopoietic stem cells.经典的Notch信号通路对于成体造血干细胞的维持并非必需。
Cell Stem Cell. 2008 Apr 10;2(4):356-66. doi: 10.1016/j.stem.2008.02.011.
7
Imaging hematopoietic precursor division in real time.实时成像造血前体细胞分裂
Cell Stem Cell. 2007 Nov;1(5):541-54. doi: 10.1016/j.stem.2007.08.009.
8
Differential Notch signalling distinguishes neural stem cells from intermediate progenitors.差异性Notch信号传导区分神经干细胞与中间祖细胞。
Nature. 2007 Sep 20;449(7160):351-5. doi: 10.1038/nature06090. Epub 2007 Aug 26.
9
Thrombospondins deployed by thrombopoietic cells determine angiogenic switch and extent of revascularization.血小板生成细胞分泌的血小板反应蛋白决定血管生成开关和血管再生程度。
J Clin Invest. 2006 Dec;116(12):3277-91. doi: 10.1172/JCI29314.
10
Osteoclasts degrade endosteal components and promote mobilization of hematopoietic progenitor cells.破骨细胞降解骨内膜成分并促进造血祖细胞的动员。
Nat Med. 2006 Jun;12(6):657-64. doi: 10.1038/nm1417. Epub 2006 May 21.

内皮细胞对于 Notch 依赖性造血干细胞的自我更新和再群体化至关重要。

Endothelial cells are essential for the self-renewal and repopulation of Notch-dependent hematopoietic stem cells.

机构信息

Howard Hughes Medical Institute, Department of Genetic Medicine, Weill Cornell Medical College, New York, NY 10065, USA.

出版信息

Cell Stem Cell. 2010 Mar 5;6(3):251-64. doi: 10.1016/j.stem.2010.02.001.

DOI:10.1016/j.stem.2010.02.001
PMID:20207228
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2866527/
Abstract

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.

摘要

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。