首页> 外文期刊>International journal of molecular medicine >Three-dimensional co-culture of mesenchymal stromal cells and differentiated osteoblasts on human bio-derived bone scaffolds supports active multi-lineage hematopoiesis in?vitro: Functional implication of the biomimetic HSC niche
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Three-dimensional co-culture of mesenchymal stromal cells and differentiated osteoblasts on human bio-derived bone scaffolds supports active multi-lineage hematopoiesis in?vitro: Functional implication of the biomimetic HSC niche

机译:间充质基质细胞和分化成骨细胞在人类生物衍生骨支架上的三维共培养体外支持活跃的多谱系造血功能:仿生HSC生态位的功能含义

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Recent studies have indicated that the hematopoietic stem/progenitor cell (HSPC) niche, consisting of two major crucial components, namely osteoblasts?(OBs) and mesenchymal stromal cells?(MSCs), is responsible for the fate of HSPCs. Thus, closely mimicking the HSPC niche ex?vivo may be an efficient strategy with which to develop new culture strategies to specifically regulate the balance between HSPC self-renewal and proliferation. The aim of this study was to establish a novel HSPC three-dimensional culture system by co-culturing bone marrow-derived MSCs and OBs differentiated from MSCs without any cytokines as feeder cells and applying bio-derived bone from human femoral metaphyseal portion as the scaffold. Scanning electron microscopy revealed the excellent biocompatibility of bio-derived bone with bone marrow-derived MSCs and OBs differentiated from MSCs. Western blot analysis revealed that many cytokines, which play key roles in HSPC regulation, were comprehensively secreted, while ELISA revealed that extracellular matrix molecules were also highly expressed. Hoechst?33342/propidium iodide ?uorescence staining proved that our system could be used to supply a long-term culture of HSPCs. Flow cytometric analysis and qPCR of p21 expression demonstrated that our system significantly promoted the self-renewal and ex?vivo expansion of HSPCs. Colony-forming unit?(CFU) and long-term culture-initiating cell?(LTC-IC) assays confirmed that our system has the ability for both the expansion of CD34+ hematopoietic stem cells?(HPCs) and the maintenance of a primitive cell subpopulation of HSCs. The severe-combined immunodeficient mouse repopulating cell assay revealed the promoting effects of our system on the expansion of long-term primitive transplantable HSCs. In conclusion, our system may be a more comprehensive and balanced system which not only promotes the self-renewal and ex?vivo expansion of HSPCs, but also maintains primitive HPCs with superior phenotypic and functional attributes.
机译:最近的研究表明,造血干/祖细胞(HSPC)的生态位由两个主要关键成分组成,即成骨细胞(OBs)和间充质基质细胞(MSCs),是造血干细胞命运的原因。因此,密切模仿HSPC利基生存可能是一种有效的策略,通过它可以开发新的培养策略来专门调节HSPC自我更新和增殖之间的平衡。这项研究的目的是通过共培养骨髓来源的MSC和与没有任何细胞因子的MSC分化的OB作为饲养细胞并应用人股骨干s端部分的生物来源的骨作为支架来建立新型HSPC三维培养系统。扫描电子显微镜显示,生物来源的骨与骨髓来源的MSC和与MSC分化的OB具有极好的生物相容性。 Western印迹分析表明,许多在HSPC调节中起关键作用的细胞因子被广泛分泌,而ELISA显示细胞外基质分子也被高度表达。 Hoechst?33342 /碘化丙啶荧光染色证明,我们的系统可用于提供HSPC的长期培养。流式细胞仪分析和p21表达的qPCR表明,我们的系统显着促进了HSPC的自我更新和体外扩增。菌落形成单位(CFU)和长期培养起始细胞(LTC-IC)测定证实,我们的系统具有同时扩增CD34 +造血干细胞(HPC)和维持原始细胞的能力。 HSC的亚群。严重结合的免疫缺陷小鼠繁殖细胞测定揭示了我们的系统对长期原始可移植HSC扩增的促进作用。综上所述,我们的系统可能是一个更全面,更平衡的系统,它不仅可以促进HSPC的自我更新和体外扩展,还可以维持具有卓越表型和功能属性的原始HPC。

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