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人髓系祖细胞群体的分离与鉴定——TpoR作为常见髓系祖细胞与巨核细胞/红系祖细胞之间的鉴别标志物

Isolation and characterization of human myeloid progenitor populations--TpoR as discriminator between common myeloid and megakaryocyte/erythroid progenitors.

作者信息

Edvardsson Louise, Dykes Josefina, Olofsson Tor

机构信息

Division of Hematology and Transfusion Medicine, Department of Laboratory Medicine, Biomedical Center, Lund University, Lund, Sweden.

出版信息

Exp Hematol. 2006 May;34(5):599-609. doi: 10.1016/j.exphem.2006.01.017.

Abstract

OBJECTIVE

The common myeloid progenitor (CMP) and its progeny, the granulocyte/monocyte progenitor (GMP) and megakaryocyte/erythrocyte progenitor (MEP), have been isolated based on the surface expression of CD34, IL-3Ralpha, and CD45RA. However, high resolution of IL-3Ralpha- and IL-3Ralphalo cells required to adequately separate the CMP and MEP populations is difficult to achieve. The aim of this study was to find a complementary surface marker to obtain a better separation of these two populations and to further characterize the acquired progenitor populations.

MATERIALS AND METHODS

To evaluate the thrombopoietin receptor (TpoR) as a candidate marker, CD19-/CD34+/IL-3Ralphalo/-/CD45RA-/TpoR- (CMP), CD19-/CD34+/IL-3Ralphalo/CD45RA+/TpoR- (GMP), and CD19-/CD34+/IL-3Ralphalo/-/CD45RA-/TpoR+ (MEP) cells from human bone marrow were sorted to semisolid cultures for colony assays, and in addition analyzed for their surface expression of other growth factor receptors (GFRs) and sorted to real-time RT-PCR for gene expression analysis.

RESULTS

The colony-formation and gene expression assays showed that inclusion of TpoR as a marker gave a distinct and reproducible separation of the myeloid progenitors. Furthermore, most GFR surface expression correlated to gene expression, but there were also striking discrepancies, in particular for the common beta-chain of the IL-3R, GM-CSFR, and IL-5R and for TpoR.

CONCLUSION

Our data establish the TpoR as an important tool for isolation of the myeloid progenitors and demonstrate that the surface expression of GFRs cannot be predicted by their gene expression. Importantly, the refined isolation of CMPs will allow more detailed studies of regulatory mechanisms steering CMPs towards erythropoiesis vs granulopoiesis in steady state and response to peripheral demands.

摘要

目的

常见髓系祖细胞(CMP)及其后代,即粒细胞/单核细胞祖细胞(GMP)和巨核细胞/红细胞祖细胞(MEP),已基于CD34、IL-3Rα和CD45RA的表面表达得以分离。然而,要充分分离CMP和MEP群体,实现对IL-3Rα高表达和低表达细胞的高分辨率分离颇具难度。本研究旨在寻找一种互补性表面标志物,以更好地分离这两个群体,并进一步对所获得的祖细胞群体进行表征。

材料与方法

为评估血小板生成素受体(TpoR)作为候选标志物,将来自人骨髓的CD19-/CD34+/IL-3Rα低表达/-/CD45RA-/TpoR-(CMP)、CD19-/CD34+/IL-3Rα低表达/CD45RA+/TpoR-(GMP)和CD19-/CD34+/IL-3Rα低表达/-/CD45RA-/TpoR+(MEP)细胞分选至半固体培养物中进行集落测定,此外还分析了它们其他生长因子受体(GFR)的表面表达,并分选至实时逆转录聚合酶链反应(RT-PCR)进行基因表达分析。

结果

集落形成和基因表达测定表明,将TpoR作为标志物可实现髓系祖细胞的明显且可重复的分离。此外,大多数GFR表面表达与基因表达相关,但也存在显著差异,特别是对于IL-3R、GM-CSFR和IL-5R的共同β链以及TpoR。

结论

我们的数据确立了TpoR作为分离髓系祖细胞的重要工具,并表明GFR的表面表达无法通过其基因表达来预测。重要的是,对CMP的精细分离将有助于更详细地研究在稳态和对外周需求的反应中引导CMP向红细胞生成与粒细胞生成方向发展的调控机制。

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