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首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Novel three-dimensional long-term bone marrow culture system using polymer particles with grafted epoxy-polymer-chains supports the proliferation and differentiation of hematopoietic stem cells.
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Novel three-dimensional long-term bone marrow culture system using polymer particles with grafted epoxy-polymer-chains supports the proliferation and differentiation of hematopoietic stem cells.

机译:使用带有接枝的环氧-聚合物链的聚合物颗粒的新型三维长期骨髓培养系统,支持造血干细胞的增殖和分化。

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Hematopoiesis occurs in the bone marrow, where primitive hematopoietic cells proliferate and differentiate in close association with a three-dimensional (3D) hematopoietic microenvironment composed of stromal cells. We examined the hematopoietic supportive ability of stromal cells in a 3D culture system using polymer particles with grafted epoxy polymer chains. Umbilical cord blood-derived CD34(+) cells were co-cultivated with MS-5 stromal cells. They formed a 3D structure in the culture dish in the presence of particles, and the total numbers of cells and the numbers of hematopoietic progenitor cells, including colony-forming unit (CFU)-Mix, CFU-granulocyte-macrophage, CFU-megakaryocyte and burst-forming unit-erythroid, were measured every seven days. The hematopoietic supportive activity of the 3D culture containing polymer particles and stromal cells was superior to that of 2D culture, and allowed the expansion and maintenance of hematopoietic progenitor cells for more than 12 weeks. Various types of hematopoietic cells, including granulocytes, macrophages and megakaryocytes at different maturation stages, appeared in the 3D culture, suggesting that the CD34(+) cells were able to differentiate into a range of blood cell types. Morphological examination showed that MS-5 stromal cells grew on the surface of the particles and bridged the gaps between them to form a 3D structure. Hematopoietic cells slipped into the 3D layer and proliferated within it, relying on the presence of the MS-5 cells. These results suggest that this 3D culture system using polymer particles reproduced the hematopoietic phenomenon in vitro, and might thus provide a new tool for investigating hematopoietic stem cell-stromal cell interactions.
机译:造血发生在骨髓中,原始造血细胞的增殖和分化与基质细胞组成的三维(3D)造血微环境密切相关。我们使用带有接枝的环氧聚合物链的聚合物颗粒在3D培养系统中检查了基质细胞的造血支持能力。脐血来源的CD34(+)细胞与MS-5基质细胞共培养。它们在存在颗粒的培养皿中形成3D结构,细胞总数和造血祖细胞数量,包括集落形成单位(CFU)-混合,CFU-粒细胞-巨噬细胞,CFU-巨核细胞和每七天测量一次爆发形成的类红系。包含聚合物颗粒和基质细胞的3D培养物的造血支持活性优于2D培养物,并允许造血祖细胞的扩增和维持超过12周。 3D培养物中出现了各种类型的造血细胞,包括处于不同成熟阶段的粒细胞,巨噬细胞和巨核细胞,这表明CD34(+)细胞能够分化为多种血细胞类型。形态学检查表明,MS-5基质细胞在颗粒表面生长,并弥合它们之间的间隙,形成3D结构。造血细胞依靠MS-5细胞的存在滑入3D层并在其中扩散。这些结果表明,这种使用聚合物颗粒的3D培养系统在体外可重现造血现象,因此可能为研究造血干细胞与基质细胞之间的相互作用提供了新的工具。

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