Division of Bioengineering, School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore, Singapore.
Biotechnol Bioeng. 2012 May;109(5):1248-58. doi: 10.1002/bit.24400. Epub 2011 Dec 16.
We have developed a hematopoietic co-culture system using the hollow fiber bioreactor (HFBR) as a potential in vitro bone marrow model for evaluating leukemia. Supporting stroma using HS-5 cells was established in HFBR system and the current bioprocess configuration yielded an average glucose consumption of 640 mg/day and an average protein concentration of 6.40 mg/mL in the extracapillary space over 28 days. Co-culture with erythroleukemia K562 cells was used as a model for myelo-leukemic cell proliferation and differentiation. Two distinct localizations of K562 cells (loosely adhered and adherent cells) were identified and characterized after 2 weeks. The HFBR co-culture resulted in greater leukemic cell expansion (3,130 fold vs. 43 fold) compared to a standard tissue culture polystyrene (TCP) culture. Majority of expanded cells (68%) in HFBR culture were the adherent population, highlighting the importance of cell-cell contact for myelo-leukemic proliferation. Differentiation tendencies in TCP favored maturation toward monocyte and erythrocyte lineages but maintained a pool of myeloid progenitors. In contrast, HFBR co-culture exhibited greater lineage diversity, stimulating monocytic and megakaryocytic differentiation while inhibiting erythroid maturation. With the extensive stromal expansion capacity on hollow fiber surfaces, the HFBR system is able to achieve high cell densities and 3D cell-cell contacts mimicking the bone marrow microenvironment. The proposed in vitro system represents a dynamic and highly scalable 3D co-culture platform for the study of cell-stroma dependent hematopoietic/leukemic cell functions and ex vivo expansion.
我们开发了一种使用中空纤维生物反应器(HFBR)的造血共培养系统,作为评估白血病的潜在体外骨髓模型。在 HFBR 系统中建立了使用 HS-5 细胞的支持基质,当前的生物工艺配置在 28 天内产生了平均每天 640 毫克的葡萄糖消耗和毛细血管外空间中 6.40 毫克/毫升的平均蛋白质浓度。与红白血病 K562 细胞共培养用作髓白血病细胞增殖和分化的模型。在 2 周后,鉴定并表征了 K562 细胞的两种不同定位(松散附着和附着细胞)。与标准组织培养聚苯乙烯(TCP)培养相比,HFBR 共培养导致白血病细胞扩增(3130 倍对 43 倍)更大。HFBR 培养物中扩增细胞的大多数(68%)是附着群体,突出了细胞间接触对髓白血病增殖的重要性。TCP 中的分化趋势有利于向单核细胞和红细胞谱系成熟,但保持了髓样祖细胞池。相比之下,HFBR 共培养表现出更大的谱系多样性,刺激单核细胞和巨核细胞分化,同时抑制红细胞成熟。由于中空纤维表面具有广泛的基质扩展能力,HFBR 系统能够实现高细胞密度和 3D 细胞-细胞接触,模拟骨髓微环境。所提出的体外系统代表了用于研究细胞-基质依赖性造血/白血病细胞功能和体外扩增的动态和高度可扩展的 3D 共培养平台。