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分选得到的人CD34(+)CXCR4(-)细胞含有细胞内CXCR4,其可功能性表达并实现NOD/SCID重建。

Human CD34(+)CXCR4(-) sorted cells harbor intracellular CXCR4, which can be functionally expressed and provide NOD/SCID repopulation.

作者信息

Kollet Orit, Petit Isabelle, Kahn Joy, Samira Sarit, Dar Ayelet, Peled Amnon, Deutsch Varda, Gunetti Monica, Piacibello Wanda, Nagler Arnon, Lapidot Tsvee

机构信息

Immunology Department, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Blood. 2002 Oct 15;100(8):2778-86. doi: 10.1182/blood-2002-02-0564.

Abstract

Homing and repopulation of nonobese diabetic/severe combined immunodeficient (NOD/SCID) mice by enriched human CD34(+) stem cells from cord blood, bone marrow, or mobilized peripheral blood are dependent on stromal cell-derived factor 1 (SDF-1)/CXCR4 interactions. Recently, human cord and fetal blood CD34(+)CD38(-)CXCR4(-) and CXCR4(+) cells, sorted with neutralizing anti-CXCR4 monoclonal antibody (mAb), were shown to have similar NOD/SCID repopulation potential. Herein we report that human cord blood CD34(+)CXCR4(+) (R4(+)) and CD34(+)CXCR4(-) (R4(-)) subsets, sorted with neutralizing anti-CXCR4 mAb, engrafted NOD/SCID mice with significantly lower levels of human cells compared with nonsorted and SDF-1-migrated CD34(+) cells. Coinjection of purified cells with 10 microg anti-CXCR4 mAb significantly reduced engraftment of all CD34(+) subsets, and 50 microg completely abrogated engraftment by R4(-) and CD34(+) cells. Importantly, R4(-) cells harbor intracellular CXCR4, which can be rapidly induced to cell surface expression within a few hours. Moreover, 48 hours of cytokine stimulation resulted in up-regulation of both cell surface and intracellular CXCR4, restoring migration capacities toward a gradient of SDF-1 and high-level NOD/SCID repopulation potential. In addition, homing of sorted R4(-) cells into the murine bone marrow and spleen was significantly slower and reduced compared to CD34(+) cells but yet CXCR4 dependent. In conclusion, R4(-) cells express intracellular CXCR4, which can be functionally expressed on the cell membrane to mediate SDF-1-dependent homing and repopulation. Our results suggest dynamic CXCR4 expression on CD34(+) stem and progenitor cells, regulating their motility and repopulation capacities.

摘要

来自脐带血、骨髓或动员外周血的富集人CD34(+)干细胞对非肥胖糖尿病/严重联合免疫缺陷(NOD/SCID)小鼠的归巢和再增殖依赖于基质细胞衍生因子1(SDF-1)/CXCR4相互作用。最近,用中和性抗CXCR4单克隆抗体(mAb)分选的人脐带血和胎儿血CD34(+)CD38(-)CXCR4(-)和CXCR4(+)细胞显示出相似的NOD/SCID再增殖潜能。在此我们报告,用中和性抗CXCR4 mAb分选的人脐带血CD34(+)CXCR4(+)(R4(+))和CD34(+)CXCR4(-)(R4(-))亚群与未分选的和SDF-1迁移的CD34(+)细胞相比,植入NOD/SCID小鼠的人细胞水平显著降低。将纯化细胞与10微克抗CXCR4 mAb共同注射显著降低了所有CD34(+)亚群的植入,而50微克则完全消除了R4(-)和CD34(+)细胞的植入。重要的是,R4(-)细胞含有细胞内CXCR4,其可在数小时内迅速诱导至细胞表面表达。此外,48小时的细胞因子刺激导致细胞表面和细胞内CXCR4均上调,恢复了对SDF-1梯度的迁移能力和高水平的NOD/SCID再增殖潜能。另外,与CD34(+)细胞相比,分选的R4(-)细胞归巢至小鼠骨髓和脾脏的速度显著减慢且数量减少,但仍依赖于CXCR4。总之,R4(-)细胞表达细胞内CXCR4,其可在细胞膜上功能性表达以介导SDF-1依赖性归巢和再增殖。我们的结果表明CD34(+)干细胞和祖细胞上CXCR4的动态表达调节其运动性和再增殖能力。

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