Division of Molecular Medicine and Gene Therapy, Lund Stem Cell Center, Lund University, Lund, Sweden.
Department of Research and Development, Central Blood Institute, Japanese Red Cross Society, Tokyo, Japan.
Hum Cell. 2022 Jan;35(1):408-417. doi: 10.1007/s13577-021-00652-7. Epub 2021 Nov 24.
Ex vivo manufactured red blood cells (RBC) generated from immortalized erythroid cell lines which can continuously grow are expected to become a significant alternative in future transfusion therapies. The ectopic expression of human papilloma virus (HPV) E6/E7 gene has successfully been employed to establish these cell lines. To induce differentiation and maturation of the immortalized cell lines, terminating the HPV-E6/E7 expression through a gene induction system has been believed to be essential. Here, we report that erythroid cell lines established from human bone marrow using simple expression of HPV-E6/E7 are capable of normal erythroid differentiation, without turning gene expression off. Through simply changing cell culture conditions, a newly established cell line, Erythroid Line from Lund University (ELLU), is able to differentiate toward mature cells, including enucleated reticulocytes. ELLU is heterogeneous and, unexpectedly, clones expressing adult hemoglobin rapidly differentiate and produce fragile cells. Upon differentiation, other ELLU clones shift from fetal to adult hemoglobin expression, giving rise to more mature cells. Our findings propose that it is not necessary to employ gene induction systems to establish immortalized erythroid cell lines sustaining differentiation potential and describe novel cellular characteristics for desired functionally competent clones.
从永生化的红细胞系中体外制造的红细胞(RBC)可以持续生长,预计将成为未来输血治疗的重要替代方法。已经成功地通过异位表达人乳头瘤病毒(HPV)E6/E7 基因来建立这些细胞系。为了诱导永生化细胞系的分化和成熟,通过基因诱导系统终止 HPV-E6/E7 的表达被认为是必不可少的。在这里,我们报告使用简单表达 HPV-E6/E7 从人骨髓中建立的红细胞系能够进行正常的红细胞分化,而无需关闭基因表达。通过简单地改变细胞培养条件,一个新建立的细胞系,即 Lund 大学的红细胞系(ELLU),能够向成熟细胞分化,包括脱核网织红细胞。ELLU 是异质的,出人意料的是,表达成人血红蛋白的克隆迅速分化并产生脆弱的细胞。在分化过程中,其他 ELLU 克隆从胎儿血红蛋白表达转变为成人血红蛋白表达,产生更成熟的细胞。我们的发现表明,建立维持分化潜能的永生化红细胞系并不需要使用基因诱导系统,并描述了用于所需功能成熟克隆的新型细胞特征。