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Enhanced Ex Vivo Expansion of Human Hematopoietic Progenitors on Native and Spin Coated Acellular Matrices Prepared from Bone Marrow Stromal Cells

机译:提高人造血祖细胞对由骨髓基质细胞制备的天然和旋转涂层的血细胞基质的人造血祖细胞的膨胀

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摘要

The extracellular microenvironment in bone marrow (BM) is known to regulate the growth and differentiation of hematopoietic stem and progenitor cells (HSPC). We have developed cell-free matrices from a BM stromal cell line (HS-5), which can be used as substrates either in native form or as tissue engineered coatings, for the enhanced ex vivo expansion of umbilical cord blood (UCB) derived HSPC. The physicochemical properties (surface roughness, thickness, and uniformity) of native and spin coated acellular matrices (ACM) were studied using scanning and atomic force microscopy (SEM and AFM). Lineage-specific expansion of HSPC, grown on these substrates, was evaluated by immunophenotypic (flow cytometry) and functional (colony forming) assays. Our results show that the most efficient expansion of lineage-specific HSPC occurred on spin coated ACM. Our method provides an improved protocol for ex vivo HSPC expansion and it offers a system to study the in vivo roles of specific molecules in the hematopoietic niche that influence HSPC expansion.
机译:已知骨髓(BM)中的细胞外微环境调节造血干细胞和祖细胞(HSPC)的生长和分化。我们已经开发了来自BM基质细胞系(HS-5)的无细胞基质,其可以用作天然形式或作为组织工程涂层的基材,用于增强脐带血(UCB)的Hspc的增强的离体膨胀。使用扫描和原子力显微镜(SEM和AFM)研究了天然和旋转涂覆的母细胞基质(ACM)的物质化学性质(表面粗糙度,厚度和均匀性)。通过免疫型(流式细胞术)和功能性(菌落形成)测定来评估这些基材上生长的HSPC的谱系特异性扩增。我们的研究结果表明,旋涂的ACM上发生了谱系特异性HSPC的最有效扩展。我们的方法为前体内HSPC扩展提供了一种改进的协议,它提供了一种学习影响HSPC扩增的造血利基中特定分子的体内作用的系统。

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