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首页> 外文期刊>Bone marrow transplantation >Cobblestone area-forming cells, long-term culture-initiating cells and NOD/SCID repopulating cells in human neonatal blood: a comparison with umbilical cord blood.
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Cobblestone area-forming cells, long-term culture-initiating cells and NOD/SCID repopulating cells in human neonatal blood: a comparison with umbilical cord blood.

机译:新生儿血液中的鹅卵石形成区域细胞,长期培养起始细胞和NOD / SCID繁殖细胞:与脐带血的比较。

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摘要

Our prior study demonstrated that neonatal blood (NB) contained hematopoietic stem and progenitor cells that declined rapidly after birth. To validate that NB is a source of functional stem cells, we characterized this population in terms of cobblestone area-forming cells (CAFC), long-term culture-initiating cells (LTC-IC) and NOD/SCID mouse repopulating cells (SRC) in NB and umbilical cord blood (CB). Our data demonstrated that the frequencies of CAFC (30.2 vs 37.1, P = 0.14) and LTC-IC (28.6 vs 31.0, P = 0.49) in 1 x 10(5) mononuclear cells (MNC) of NB and CB were similar, suggesting that these cells were preserved in the circulation of the neonates shortly after birth. Sublethally irradiated NOD/SCID mice were transplanted with CD34(+) cells enriched from thawed NB and CB. At 6 weeks post transplant, human (hu)CD45(+) cells were detected in the bone marrow (BM), spleen and peripheral blood (PB) of the mice as demonstrated by flow cytometric and DNA analysis. Levels of huCD45(+)cells and colony forming units (CFU) appeared to be dependent on the infusion cell dose and were higher in animals receiving CB cells when compared with those of the NB group. The transplanted cells were capable of differentiation into multi-lineage progenitor cells (CD34(+) cells and differential CFU), as well as mature myeloid (CD14(+), CD33(+)), B lymphoid (CD19(+)) and megakaryocytic (CD61(+)) cells in the recipients. NB cells, subjected to ex vivo culture in an optimized preclinical condition, were significantly expanded to early and committed progenitor cells. Expanded NB contained SRC at a reduced quantity but with high proportions of CD14(+) cells and CD33(+) cells. Our study confirms that NB contains pluripotent hematopoietic stem and progenitor cells capable of homing and engrafting the NOD/SCID mice.
机译:我们的先前研究表明,新生儿血液(NB)包含造血干细胞和祖细胞,这些细胞在出生后迅速下降。为了验证NB是功能性干细胞的来源,我们根据鹅卵石区域形成细胞(CAFC),长期培养起始细胞(LTC-IC)和NOD / SCID小鼠繁殖细胞(SRC)来表征该种群在NB和脐带血(CB)中。我们的数据表明,在NB和CB的1 x 10(5)单核细胞(MNC)中,CAFC(30.2 vs 37.1,P = 0.14)和LTC-IC(28.6 vs 31.0,P = 0.49)的频率相似,表明这些细胞在出生后不久就被保存在新生儿的循环系统中。亚致死照射的NOD / SCID小鼠移植了从融化的NB和CB中富集的CD34(+)细胞。移植后6周,通过流式细胞仪和DNA分析证明,在小鼠的骨髓(BM),脾脏和外周血(PB)中检测到人(hu)CD45(+)细胞。 huCD45(+)细胞和集落形成单位(CFU)的水平似乎取决于输注细胞的剂量,并且与NB组相比,接受CB细胞的动物中的水平更高。移植的细胞能够分化为多系祖细胞(CD34(+)细胞和差异性CFU),以及成熟的髓样细胞(CD14(+),CD33(+)),B淋巴样细胞(CD19(+))和收件人中的巨核细胞(CD61(+))。在优化的临床前条件下进行离体培养的NB细胞显着扩增为早期和定型祖细胞。扩展的NB包含的SRC数量减少,但CD14(+)细胞和CD33(+)细胞的比例较高。我们的研究证实,NB含有能够归巢和植入NOD / SCID小鼠的多能造血干细胞和祖细胞。

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