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首页> 外文期刊>Stem Cell Research & Therapy >Umbilical cord blood-derived non-hematopoietic stem cells retrieved and expanded on bone marrow-derived extracellular matrix display pluripotent characteristics
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Umbilical cord blood-derived non-hematopoietic stem cells retrieved and expanded on bone marrow-derived extracellular matrix display pluripotent characteristics

机译:在骨髓来源的细胞外基质上回收和扩增的脐带血来源的非造血干细胞具有多能性

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Background Umbilical cord blood (UCB) not only contains hematopoietic stem cells (HSCs), but also non-hematopoietic stem cells (NHSCs) that are able to differentiate into a number of distinct cell types. Based on studies published to date, the frequency of NHSCs in UCB is believed to be very low. However, the isolation of these cells is primarily based on their adhesion to tissue culture plastic surfaces. Methods and results In the current study, we demonstrate that this approach overlooks some of the extremely immature NHSCs because they lack the ability to adhere to plastic. Using a native extracellular matrix (ECM), produced by bone marrow (BM) stromal cells, the majority of the UCB-NHSCs attached within 4?h. The colony-forming unit fibroblast frequency of these cells was 1.5?×?104/108 mononuclear cells, which is at least 4000-fold greater than previously reported for UCB-NHSCs. The phenotype of these cells was fibroblast-like and different from those obtained by plastic adhesion; they formed embryonic body-like clusters that were OCT4-positive and expressed other human embryonic stem cell-related markers. Importantly, when implanted subcutaneously for 8?weeks into immunocompromised mice, these ECM-adherent and expanded NHSCs generated three germ layer-derived human tissues including muscle, fat, blood vessel, bone, gland, and nerve. Moreover, injection of these cells into muscle damaged by cryoinjury significantly accelerated muscle regeneration. Conclusions These results indicate that UCB may be a virtually unlimited source of NHSCs when combined with isolation and expansion on ECM. NHSCs may be a practical alternative to embryonic stem cells for a number of therapeutic applications.
机译:背景技术脐带血(UCB)不仅包含造血干细胞(HSC),而且还包含能够分化为多种不同细胞类型的非造血干细胞(NHSC)。根据迄今为止发表的研究,人们认为UCB中NHSC的发生率很低。然而,这些细胞的分离主要基于它们对组织培养塑料表面的粘附。方法和结果在当前的研究中,我们证明了这种方法忽略了一些非常不成熟的NHSC,因为它们缺乏粘附塑料的能力。使用由骨髓(BM)基质细胞产生的天然细胞外基质(ECM),大多数UCB-NHSC在4?h内附着。这些细胞的集落形成单位成纤维细胞频率为1.5?×?10 4 / 10 8 单核细胞,比先前报道的UCB高至少4000倍-NHSC。这些细胞的表型是成纤维细胞样的,与通过塑性粘附获得的不同。他们形成了OCT4阳性的胚状体簇,并表达了其他与人类胚胎干细胞相关的标志物。重要的是,当皮下植入免疫功能低下的小鼠8周时,这些ECM粘附和扩展的NHSC会产生三种胚层来源的人体组织,包括肌肉,脂肪,血管,骨骼,腺体和神经。此外,将这些细胞注射到冷冻伤所致的肌肉中大大促进了肌肉的再生。结论这些结果表明,与ECM的隔离和扩展结合使用时,UCB可能实际上是无限量的NHSC来源。对于许多治疗应用而言,NHSC可能是胚胎干细胞的实用替代品。

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