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使用Hoechst 33342和罗丹明123分离原始人类骨髓造血祖细胞。

Isolation of primitive human bone marrow hematopoietic progenitor cells using Hoechst 33342 and Rhodamine 123.

作者信息

Leemhuis T, Yoder M C, Grigsby S, Agüero B, Eder P, Srour E F

机构信息

Division of Hematology/Oncology, Indiana Elks Cancer Research Center, Indianapolis, IN, USA.

出版信息

Exp Hematol. 1996 Aug;24(10):1215-24.

PMID:8765497
Abstract

In addition to possessing multilineage differentiation and self-renewal capabilities, pluripotent hematopoietic stem cells are believed to be mitotically quiescent and metabolically inactive. Fractions of human bone marrow (BM) CD34+ cells can be further enriched for primitive hematopoietic progenitor cells (HPC) by using a number of cell-surface markers. All of these fractions, however, contain cells that are still heterogeneous as far as their metabolic and mitotic activities are concerned. We therefore used Hoechst 33342 (Hst) to identify quiescent cells and Rhodamine 123 (Rh123) to identify metabolically inactive cells. CD34+HstdimRh123dim (CD34+d/d) and CD34+HstbrightRh123bright (CD34+b/b) cells were isolated by flow cytometry to examine the hematopoietic functions of mitotically and metabolically homogeneous progenitors. Cell-cycle status, progenitor cell content, maintenance of in vitro hematopoiesis, and long-term hematopoietic culture-initiating cell (LTHC-IC) content of CD34+d/d and CD34+b/b cells were compared with CD34+HLA-DR- cells, a well-defined phenotype of primitive HPC. Whereas 99.2 +/- 0.5% of freshly isolated CD34+d/d cells were in G0/G1 phase of the cell cycle, only 74.4 +/- 11.5% of CD34+b/b and 75.6 +/- 1.1% of CD34+HLA-DR- cells were in G0/G1. The number of multipotential progenitors (colony-forming units-granulocyte/erythroid/ macrophage/megakaryocyte [CFU-GEMM]) detected in CD34+d/d cells was twice that observed in CD34+HLA-DR- cells and eight times that in CD34+b/b cells. In stromal cell-free long-term cultures maintained for 10 weeks, production of assayable progenitors in cultures initiated with CD34+d/d cells exceeded that detected in CD34+HLA-DR- cultures by more than three-fold. Only in CD34+d/d cultures were high proliferative potential colony-forming cell (HPP-CFC)-derived colonies detected over a period of 6 weeks. Limiting dilution analysis revealed that the frequency of LTHC-IC was highest among CD34+d/d cells (7.2 +/- 3.3%), followed by a frequency of 4.5 +/- 4.8% for CD34+HLA-DR- cells and 2.2 +/- 3.5% for CD34+b/b cells. The primitive nature of HPC identified by CD34, Hst, and Rh123 was confirmed by the ability of as few as 200 murine marrow cells isolated by this technique to radioprotect and fully reconstitute lethally irradiated recipients. These results indicate that Hst and Rh123 staining can be used in combination with CD34 immunofluorescence to isolate a quiescent subpopulation of human primitive hematopoietic progenitor cells. Cells isolated by this technique appear to have functional properties associated with stem cells, suggesting that they may be ideal candidates for studies requiring primitive HPC, such as ex vivo expansion and somatic gene therapy.

摘要

除了具有多谱系分化和自我更新能力外,多能造血干细胞被认为处于有丝分裂静止状态且代谢不活跃。通过使用多种细胞表面标志物,可以进一步富集人骨髓(BM)CD34⁺细胞中的原始造血祖细胞(HPC)。然而,就其代谢和有丝分裂活性而言,所有这些组分中的细胞仍然是异质性的。因此,我们使用Hoechst 33342(Hst)来鉴定静止细胞,使用罗丹明123(Rh123)来鉴定代谢不活跃细胞。通过流式细胞术分离出CD34⁺HstdimRh123dim(CD34⁺d/d)和CD34⁺HstbrightRh123bright(CD34⁺b/b)细胞,以检测有丝分裂和代谢均一的祖细胞的造血功能。将CD34⁺d/d和CD34⁺b/b细胞的细胞周期状态、祖细胞含量、体外造血维持情况以及长期造血培养起始细胞(LTHC-IC)含量与CD34⁺HLA-DR⁻细胞(一种明确的原始HPC表型)进行比较。新鲜分离的CD34⁺d/d细胞中有99.2±0.5%处于细胞周期的G0/G1期,而CD34⁺b/b细胞中只有74.4±11.5%,CD34⁺HLA-DR⁻细胞中只有75.6±1.1%处于G0/G1期。在CD34⁺d/d细胞中检测到的多能祖细胞(集落形成单位 - 粒细胞/红细胞/巨噬细胞/巨核细胞[CFU-GEMM])数量是CD34⁺HLA-DR⁻细胞中的两倍,是CD34⁺b/b细胞中的八倍。在无基质细胞的长期培养中维持10周,用CD34⁺d/d细胞起始的培养物中可检测到的祖细胞产量超过CD34⁺HLA-DR⁻培养物中的三倍以上。仅在CD34⁺d/d培养物中,在6周的时间内检测到了高增殖潜能集落形成细胞(HPP-CFC)衍生的集落。极限稀释分析显示,LTHC-IC的频率在CD34⁺d/d细胞中最高(7.2±3.3%),其次是CD34⁺HLA-DR⁻细胞中的频率为4.5±4.8%,CD34⁺b/b细胞中的频率为2.2±3.5%。通过该技术分离的仅200个小鼠骨髓细胞对致死性照射受体进行辐射防护和完全重建的能力,证实了由CD34、Hst和Rh123鉴定的HPC的原始性质。这些结果表明,Hst和Rh123染色可与CD34免疫荧光结合使用,以分离人原始造血祖细胞的静止亚群。通过该技术分离的细胞似乎具有与干细胞相关的功能特性,这表明它们可能是需要原始HPC的研究(如体外扩增和体细胞基因治疗)的理想候选者。

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