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Spatial development of the cultivation of a bone marrow stromal cell line in porous carriers

机译:在多孔载体中培养骨髓基质细胞系的空间发展

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The spatial development of the cultivation of a bone marrow stromal cell line (SR-4987) in porous carriers was investigated in order to construct a three-dimensional hematopoietic culture system. Low-rate continuous agitation, 20 rpm, was an appropriate method to achieve initial adhesion of cells onto a cellulose porous beads (CPB, 100 μm pore diameter) in a spinner bottle, compared with other methods such as centrifugation and intermittent agitation. Cell growth with continuous agitation at 70 rpm after initial cell adhesion was not inferior to that at 20 rpm. A 2- and 10-fold increase in the inoculum cell concentration for CPB and another type of porous cellulose beads (Micro-cube (MC), 500 μm pore diameter) resulted in a 1.2- and 2-fold increase in final cell concentrationm, respectively. Cells attached to the MC beads and a polyester nonwoven dic (Fibra-cell (FC)) could grow and spread well on the carriers and a fibroblast-like shape was observed under scanning electron microscopy while the cells on CPB were globular. The flatness and inner surface area of these carriers may be the reason for the differences in cell morphology.
机译:研究了在多孔载体中培养骨髓基质细胞系(SR-4987)的空间发展,以构建三维造血培养系统。与离心分离和间歇搅拌等其他方法相比,低速连续搅拌(20 rpm)是使细胞最初粘附在旋转瓶中的纤维素多孔珠(CPB,孔径为100μm)上的合适方法。初始细胞粘附后,以70 rpm持续搅拌的细胞生长情况不逊于20 rpm时的生长情况。 CPB和另一种类型的多孔纤维素微珠(Micro-cube(MC),孔径500μm)的接种细胞浓度增加了2倍和10倍,导致最终细胞浓度增加了1.2倍和2倍,分别。附着在MC珠上的细胞和聚酯无纺布dic(纤维细胞(FC))可以在载体上生长并良好地散布,并且在扫描电子显微镜下观察到成纤维细胞状的形状,而CPB上的细胞呈球形。这些载体的平坦度和内表面积可能是细胞形态差异的原因。

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