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本文引用的文献

1
CD41 is developmentally regulated and differentially expressed on mouse hematopoietic stem cells.CD41 在发育过程中受到调节,并在小鼠造血干细胞上差异表达。
Blood. 2011 May 12;117(19):5088-91. doi: 10.1182/blood-2011-01-329516. Epub 2011 Mar 17.
2
Identification of adult nephron progenitors capable of kidney regeneration in zebrafish.鉴定斑马鱼中具有肾脏再生能力的成体肾祖细胞。
Nature. 2011 Feb 3;470(7332):95-100. doi: 10.1038/nature09669. Epub 2011 Jan 26.
3
Haematopoietic stem cells derive directly from aortic endothelium during development.造血干细胞在发育过程中直接来源于主动脉内皮。
Nature. 2010 Mar 4;464(7285):108-11. doi: 10.1038/nature08738. Epub 2010 Feb 14.
4
Blood stem cells emerge from aortic endothelium by a novel type of cell transition.血液干细胞通过一种新型的细胞转变从主动脉内皮中出现。
Nature. 2010 Mar 4;464(7285):112-5. doi: 10.1038/nature08761. Epub 2010 Feb 14.
5
CD41+ cmyb+ precursors colonize the zebrafish pronephros by a novel migration route to initiate adult hematopoiesis.CD41+ cmyb+前体细胞通过一条新的迁移途径定殖于斑马鱼前肾,从而启动成体造血过程。
Development. 2008 May;135(10):1853-62. doi: 10.1242/dev.015297. Epub 2008 Apr 16.
6
Transparent adult zebrafish as a tool for in vivo transplantation analysis.成年透明斑马鱼作为体内移植分析的工具。
Cell Stem Cell. 2008 Feb 7;2(2):183-9. doi: 10.1016/j.stem.2007.11.002.
7
Identification of a hierarchy of multipotent hematopoietic progenitors in human cord blood.人类脐带血中多能造血祖细胞层级结构的鉴定
Cell Stem Cell. 2007 Dec 13;1(6):635-45. doi: 10.1016/j.stem.2007.10.001.
8
Isolation and functional characterization of side population stem cells.旁群干细胞的分离与功能特性分析
Methods Mol Biol. 2008;430:183-93. doi: 10.1007/978-1-59745-182-6_13.
9
Transplantation in remission improves the disease-free survival of patients with advanced myelodysplastic syndromes treated with myeloablative T cell-depleted stem cell transplants from HLA-identical siblings.缓解期进行移植可提高接受来自 HLA 同型同胞的清髓性 T 细胞去除干细胞移植治疗的晚期骨髓增生异常综合征患者的无病生存率。
Biol Blood Marrow Transplant. 2008 Apr;14(4):458-68. doi: 10.1016/j.bbmt.2008.02.006.
10
Depletion of alloreactive donor T lymphocytes by CD95-mediated activation-induced cell death retains antileukemic, antiviral, and immunoregulatory T cell immunity.通过CD95介导的活化诱导细胞死亡清除同种异体反应性供体T淋巴细胞可保留抗白血病、抗病毒和免疫调节性T细胞免疫。
Biol Blood Marrow Transplant. 2008 Jan;14(1):99-109. doi: 10.1016/j.bbmt.2007.10.002.

斑马鱼造血干细胞的鉴定与特性分析。

The identification and characterization of zebrafish hematopoietic stem cells.

机构信息

Hematology Division, Brigham and Women's Hospital, Boston, MA 02115, USA.

出版信息

Blood. 2011 Jul 14;118(2):289-97. doi: 10.1182/blood-2010-12-327403. Epub 2011 May 17.

DOI:10.1182/blood-2010-12-327403
PMID:21586750
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3138684/
Abstract

HSCs are defined by their ability to self-renew and maintain hematopoiesis throughout the lifespan of an organism. The optical clarity of their embryos and the ease of genetic manipulation make the zebrafish (Danio rerio) an excellent model for studying hematopoiesis. Using flow cytometry, we identified 2 populations of CD41-GFP(+) cells (GFP(hi) and GFP(lo)) in the whole kidney marrow of Tg(CD41:GFP) zebrafish. Past studies in humans and mice have shown that CD41 is transiently expressed in the earliest hematopoietic progenitors and is then silenced, reappearing in the platelet/thrombocyte lineage. We have transplanted flow-sorted GFP(hi) and GFP(lo) cells into irradiated adult zebrafish and assessed long-term hematopoietic engraftment. Transplantation of GFP(hi) cells did not reconstitute hematopoiesis. In contrast, we observed multilineage hematopoiesis up to 68 weeks after primary and secondary transplantation of GFP(lo) cells. We detected the CD41-GFP transgene in all major hematopoietic lineages and CD41-GFP(+) cells in histologic sections of kidneys from transplant recipients. These studies show that CD41-GFP(lo) cells fulfill generally accepted criteria for HSCs. The identification of fluorescent zebrafish HSCs, coupled with our ability to transplant them into irradiated adult recipients, provide a valuable new tool to track HSC homing, proliferation, and differentiation into hematopoietic cells.

摘要

造血干细胞(HSCs)的自我更新和维持造血功能的能力贯穿于整个生物体的生命周期。其胚胎的光学透明度和易于进行基因操作,使得斑马鱼(Danio rerio)成为研究造血的优秀模型。我们使用流式细胞术,在 Tg(CD41:GFP) 斑马鱼的整个骨髓中鉴定出 2 种 CD41-GFP(+)细胞(GFP(hi)和 GFP(lo))。过去在人类和小鼠中的研究表明,CD41 在最早的造血祖细胞中短暂表达,然后沉默,重新出现在血小板/血栓形成细胞谱系中。我们将流式分选的 GFP(hi)和 GFP(lo)细胞移植到辐照的成年斑马鱼中,并评估长期造血植入情况。移植 GFP(hi)细胞不能重建造血。相比之下,我们观察到 GFP(lo)细胞在原发性和继发性移植后长达 68 周的时间内进行多谱系造血。我们在来自移植受者的肾脏组织学切片中检测到 CD41-GFP 转基因,并在所有主要的造血谱系中检测到 CD41-GFP(+)细胞。这些研究表明,CD41-GFP(lo)细胞满足 HSCs 的普遍接受标准。荧光斑马鱼 HSCs 的鉴定,加上我们将其移植到辐照成年受者中的能力,为追踪 HSC 归巢、增殖和分化为造血细胞提供了一种有价值的新工具。