首页> 外文学位 >A three-dimensional perfusion bioreactor system with porous glycosaminoglycan-based scaffolds for expansion of CD34+ hematopoietic stem cells.
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A three-dimensional perfusion bioreactor system with porous glycosaminoglycan-based scaffolds for expansion of CD34+ hematopoietic stem cells.

机译:具有多孔糖胺聚糖基支架的三维灌注生物反应器系统,用于扩增CD34 +造血干细胞。

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In vitro expansion of hematopoietic stem cells (HSCs) has been used as an approach to obtaining sufficient numbers of stem cells for successful engraftment of HSC for transplantation. Glycosaminoglycans (GAGs) are anionic polysaccharides of extracellular matrix that have been shown to influence the proliferation and differentiation of HSCs. Our culture studies demonstrated that specific GAGs and GAG analogues enhanced the proliferation of cord blood CD34+ cells, when covalently immobilized on chitosan membranes. In particular, it was possible to achieve high levels of proliferation by HSCs with minimal differentiatioe activity. However, the culture results were limited with respect to cell density and control of environmental parameters such as oxygen level and pH. A three-dimensional perfusion bioreactor system with GAG-chitosan scaffold was designed to more closely mimic the bone marrow microenvironment while providing more precise control of environmental parameters and achieving the high yield expansion of HSCs. CD34+ HSCs were isolated from umbilical cord blood by immunomagnetic separation and cultured within the porous scaffold in a perfusion bioreactor system. The scaffolds were harvested for SEM and histology analysis. Cellular phenotype and HSC characteristics were evaluated via flow cytometry and colony forming unit assays. The results indicate good cell retention and proliferation within the perfused scaffolds. Cell proliferation also correlates well with the parallel dish cultures. Oxygen consumption in the perfusion bioreactor system increased constantly during the culture period, indicating the increase of total number of cells. Perfusion cultures within scaffolds show higher surface antigen expressions of primitive progenitors and committed progenitor cells as compared to static monolayer culture. In colony assay, cells from perfusion culture exhibited much better performance than static one. Perfusion culture at low oxygen (5%) enhanced the expansion of CD34+ cells and colony-forming activity compared to high oxygen (19%). In this study, we demonstrate a three-dimensional perfusion culture within GAG-immobilized scaffolds provides improved maintenance and expansion of HSCs, especially in low oxygen similar to in vivo bone marrow microenvironment.
机译:造血干细胞(HSC)的体外扩增已被用作获得足够数量的干细胞以成功植入HSC进行移植的方法。糖胺聚糖(GAGs)是细胞外基质的阴离子多糖,已被证明会影响HSC的增殖和分化。我们的文化研究表明,当共价固定在壳聚糖膜上时,特定的GAG和GAG类似物可增强脐血CD34 +细胞的增殖。特别地,有可能以最小的分化活性通过HSC实现高水平的增殖。但是,培养结果在细胞密度和控制环境参数(如氧气水平和pH)方面受到限制。设计了带有GAG-壳聚糖支架的三维灌注生物反应器系统,以更紧密地模仿骨髓微环境,同时提供更精确的环境参数控制并实现HSC的高产量扩展。通过免疫磁分离从脐带血中分离出CD34 + HSC,并在灌注生物反应器系统中的多孔支架中进行培养。收获支架用于SEM和组织学分析。通过流式细胞仪和集落形成单位测定评估细胞表型和HSC特性。结果表明在灌注的支架内良好的细胞保留和增殖。细胞增殖也与平行培养皿培养良好相关。在培养期间,灌注生物反应器系统中的耗氧量不断增加,表明细胞总数增加。与静态单层培养相比,支架内的灌注培养物显示原始祖细胞和定型祖细胞的表面抗原表达更高。在菌落分析中,来自灌注培养的细胞表现出比静态细胞更好的性能。与高氧(19%)相比,低氧(5%)的灌注培养可增强CD34 +细胞的扩增和集落形成活性。在这项研究中,我们证明了固定在GAG上的支架内的三维灌注培养可改善HSC的维持和扩展,尤其是在类似于体内骨髓微环境的低氧环境下。

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