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Co-culture of cord blood CD34(+) cells with human BM mesenchymal stromal cells enhances short-term engraftment of cord blood cells in NOD/SCID mice

机译:与人BM间充质基质细胞共培养脐血CD34(+)细胞可增强NOD / SCID小鼠的脐血细胞短期植入

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Background The major challeng for cord blood transplantation (CBT) is higher rates of delayed and failed engraftment In an attempt to broaden the application of CBT to more candidates, ex vivo expansion of hematopoietic stem/progenitor cells in CB is a major area of investigation. The purpose of this study was to employ human BM mesenchymal stromal cells (hBM-MSC) as the feeding-layer to expand CB cells ex vivo. Methods In this study, hBM-MSC were isolated and characterized by morphologic, mmunophenotypic and RT-PCR analysis. The bBMMSC at passage 3 were employed as the feeding-layer to expand CB CD34(+) cells in vivo in the Presence of thrombopoietin, flt3/flk2 ligand, stem cell factor and G-CSF. The repopulating capacity of the ex vivo-expanded CB cells was also evaluated in a NOD/SCID mice transplant experiment. Results After 1 or 2 weeks of in vitro expansion, hBM-MSC supported more increasing folds of CB in total nucleated cells, CD34(+) cells and colony-forming units (CFU) compared with CB without hBM-MSC. Furthermore, although NOD/SCID mice transplanted with CB cells expanded only in the presence of cytokines showed a higher percentage of human cell engraftment in BM than those with unexpanded CB CD34(+) cells, expanded CB cells co-cultured with hBM-MSC were revealed to enhance short-term engraftment further in recipient mice. Discussion Our study suggests that hBM-MSC enhance in vitro expansion of CB CD34(+) cells and short-term engraftment of expanded CB cells in NOD/SCID mice, which may be valuable in a clinical setting.
机译:背景技术脐带血移植(CBT)的主要挑战是较高的延迟和失败植入率。为了将CBT的应用范围扩大到更多的候选对象,造血干/祖细胞在CB中的离体扩增是研究的主要领域。这项研究的目的是采用人类BM间充质基质细胞(hBM-MSC)作为饲养层,以离体扩增CB细胞。方法采用形态学,免疫表型和RT-PCR分析方法分离hBM-MSC,并进行鉴定。在存在血小板生成素,flt3 / flk2配体,干细胞因子和G-CSF的情况下,将第3代的bBMMSC用作饲养层,以在体内扩增CB CD34(+)细胞。还在NOD / SCID小鼠移植实验中评估了离体扩增CB细胞的再增殖能力。结果在体外扩增1或2周后,与没有hBM-MSC的CB相比,hBM-MSC支持的CB在总有核细胞,CD34(+)细胞和集落形成单位(CFU)中的折叠倍数增加。此外,尽管仅在存在细胞因子的情况下移植了CB细胞的NOD / SCID小鼠显示,与未扩增的CB CD34(+)细胞相比,移植入BM的人细胞百分比更高,但与hBM-MSC共培养的扩增的CB细胞却在揭示可进一步增强受体小鼠的短期植入。讨论我们的研究表明,hBM-MSC增强了CB CD34(+)细胞的体外扩增和NOD / SCID小鼠的短期植入扩展的CB细胞,这在临床环境中可能是有价值的。

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