Huang S, Law P, Young D, Ho A D
Department of Medicine, University of California, San Diego School of Medicine, USA.
Exp Hematol. 1998 Nov;26(12):1162-71.
As part of our ongoing effort to identify a rich source of pluripotent progenitor cells for transplantation and gene therapy, we cultured single-sorted CD34+ subpopulations from different human hematopoietic tissues to assess the relationship between immunophenotype expression and functional characteristics. In combination with index sorting, single cell culture permits precise assessment of the colony efficiency (CE), growth characteristics, and replating potential (RP) of each individual phenotype without interference from other cell types. CD34+ cells from fetal liver (FL), fetal bone marrow (FBM), umbilical cord blood (UCB), adult BM (ABM), and mobilized peripheral blood (MPB) were sorted and cultured as single cells according to the coexpression of CD38. With the exception of FL, higher CEs were found among CD34+/CD38+ cells vs. CD34+/CD38- cells from the same cell source. However, colonies with dispersed growth pattern (DGP) and mixed growth pattern (MGP) were found predominantly in the CD34+/CD38- subsets. We next examined the functional characteristics of CD34+ subsets defined by three-color analysis and coexpression of CD38 and HLA-DR or CD38 and CDw90 (Thy-1). Using the combination CD34, CD38, and HLA-DR, the highest CEs, the highest percentages of colonies with DGP/MGP and the maximum RP were found in the CD34+/CD38-/HLA-DR+ subset among samples from FL, FBM, and UCB. The CEs and percentages of colonies with DGP/MGP of single-sorted CD34+/CD38-/HLA-DR+ cells were 72.7+/-11.8% (mean +/- standard deviation) and 20.1+/-10.4%, respectively, in FL; 60.9+/-11.1% and 11.5+/-5.4% in FBM; 57.0+/-16.5% and 24.1+/-7.3% in UCB; 27.2+/-12.8% and 9.0+/-4.9% in MPB, and 9.6+/-7.8% and 4.6+/-3.2% in ABM. Using the combination CD34, CD38, and CDw90(Thy-1), the subset with the highest CEs and highest percentages of colonies with DGP/MGP was found to be CD34+/CD38-/CDw90- in FL and FBM, but colonies with high RP were distributed evenly among CDw90+ and CDw90- subsets derived from FL, FBM, UCB, or MPB. We conclude that the CD34+/CD38-/HLA-DR+ subset contained the highest number of candidate stem cells among the various immunophenotypes, and that FL contained the highest concentration of CD34+ cells (11.4+/-7.5%) and the highest level of CD34+/CD38-/HLA-DR+ subsets (34.7+/-8.2%) among cells from various ontogenic age. Our estimate of candidate stem cells using single cell suspension culture correlated with that obtained by single cell long-term culture-initiating cells. CD34+/CD38-/HLA-DR+ cells from FL appear to represent the best targets for ex vivo stem cell expansion and genetic manipulation.
作为我们持续努力为移植和基因治疗寻找丰富的多能祖细胞来源的一部分,我们培养了来自不同人类造血组织的单细胞分选CD34+亚群,以评估免疫表型表达与功能特征之间的关系。结合索引分选,单细胞培养允许精确评估每个个体表型的集落效率(CE)、生长特征和再植潜力(RP),而不受其他细胞类型的干扰。根据CD38的共表达,将来自胎儿肝脏(FL)、胎儿骨髓(FBM)、脐带血(UCB)、成人骨髓(ABM)和动员外周血(MPB)的CD34+细胞分选并作为单细胞进行培养。除FL外,在来自相同细胞来源的CD34+/CD38+细胞与CD34+/CD38-细胞中发现了更高的CE。然而,具有分散生长模式(DGP)和混合生长模式(MGP)的集落主要存在于CD34+/CD38-亚群中。接下来,我们检查了通过三色分析以及CD38与HLA-DR或CD38与CDw90(Thy-1)的共表达定义的CD34+亚群的功能特征。使用CD34、CD38和HLA-DR的组合,在来自FL、FBM和UCB的样本中,CD34+/CD38-/HLA-DR+亚群中发现了最高的CE、最高百分比的具有DGP/MGP的集落和最大的RP。在FL中,单细胞分选的CD34+/CD38-/HLA-DR+细胞的CE和具有DGP/MGP的集落百分比分别为72.7±11.8%(平均值±标准差)和20.1±10.4%;在FBM中分别为60.9±11.1%和11.5±5.4%;在UCB中分别为57.0±16.5%和24.1±7.3%;在MPB中分别为27.2±12.8%和9.0±4.9%;在ABM中分别为9.6±7.8%和4.6±3.2%。使用CD34、CD38和CDw90(Thy-1)的组合,在FL和FBM中发现具有最高CE和最高百分比的具有DGP/MGP的集落的亚群是CD34+/CD38-/CDw90-,但具有高RP的集落在来自FL、FBM、UCB或MPB的CDw90+和CDw90-亚群中均匀分布。我们得出结论,在各种免疫表型中,CD34+/CD