Department of Hematopoiesis, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center (UMC), Amsterdam, The Netherlands.
Department of Biotechnology, Faculty of Applied Sciences, Delft University of Technology, Delft, The Netherlands.
Sci Rep. 2023 Apr 28;13(1):6960. doi: 10.1038/s41598-023-32706-1.
Iron, supplemented as iron-loaded transferrin (holotransferrin), is an essential nutrient in mammalian cell cultures, particularly for erythroid cultures. The high cost of human transferrin represents a challenge for large scale production of red blood cells (RBCs) and for cell therapies in general. We evaluated the use of deferiprone, a cell membrane-permeable drug for iron chelation therapy, as an iron carrier for erythroid cultures. Iron-loaded deferiprone (Def·Fe, at 52 µmol/L) could eliminate the need for holotransferrin supplementation during in vitro expansion and differentiation of erythroblast cultures to produce large numbers of enucleated RBC. Only the first stage, when hematopoietic stem cells committed to erythroblasts, required holotransferrin supplementation. RBCs cultured in presence of Def·Fe or holotransferrin (1000 µg/mL) were similar with respect to differentiation kinetics, expression of cell-surface markers CD235a and CD49d, hemoglobin content, and oxygen association/dissociation. Replacement of holotransferrin supplementation by Def·Fe was also successful in cultures of myeloid cell lines (MOLM13, NB4, EOL1, K562, HL60, ML2). Thus, iron-loaded deferiprone can partially replace holotransferrin as a supplement in chemically defined cell culture medium. This holds promise for a significant decrease in medium cost and improved economic perspectives of the large scale production of red blood cells for transfusion purposes.
铁作为负载铁的转铁蛋白(全转铁蛋白),是哺乳动物细胞培养中的一种必需营养物质,特别是对于红细胞培养。人转铁蛋白的高成本给大规模生产红细胞(RBC)和一般细胞治疗带来了挑战。我们评估了使用去铁酮,一种细胞膜可渗透的铁螯合剂,作为红细胞培养的铁载体。负载铁的去铁酮(Def·Fe,浓度为 52µmol/L)可以在体外扩增和分化红细胞系以产生大量去核 RBC 的过程中消除对全转铁蛋白补充的需求。只有在造血干细胞向红细胞系分化的第一阶段需要全转铁蛋白补充。用 Def·Fe 或全转铁蛋白(1000µg/mL)培养的 RBC 在分化动力学、细胞表面标志物 CD235a 和 CD49d 的表达、血红蛋白含量和氧结合/解离方面相似。在髓系细胞系(MOLM13、NB4、EOL1、K562、HL60、ML2)的培养中,用 Def·Fe 替代全转铁蛋白补充也是成功的。因此,负载铁的去铁酮可以部分替代全转铁蛋白作为化学定义细胞培养基中的补充物。这有望显著降低培养基成本,并改善大规模生产用于输血的红细胞的经济前景。