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使用流式细胞术CD34分析来定量造血祖细胞。

Use of flow cytometric CD34 analysis to quantify hematopoietic progenitor cells.

作者信息

Fritsch G, Buchinger P, Printz D

机构信息

CCRI, St. Anna Kinderspital, Vienna, Austria.

出版信息

Leuk Lymphoma. 1993 Aug;10(6):443-51. doi: 10.3109/10428199309148201.

DOI:10.3109/10428199309148201
PMID:7691307
Abstract

This review summarizes our experiments on flow cytometric analysis of CD34 positive mononuclear cells (MNC) and on colony formation of myeloid hematopoietic progenitor cells in the clonogenic assay. We examined MNC isolated by density centrifugation of bone marrow, cord blood and peripheral blood. The latter samples originated either from patients recovering from myelosuppressive treatment who received no growth factors or from patients treated with G-CSF or GM-CSF. We attempted to correlate the results obtained by CD34 analysis with the cloning efficiency determined after a 14 day culture period in the methylcellulose-based clonogenic assay. The highest cloning efficacy (60%-100%) was observed in cord blood, however, a good correlation was found in both untreated and GM-CSF treated peripheral blood samples in which a mean of 50% and 20% of the number of CD34 positive MNC gave rise to myeloid colonies. In bone marrow, the cloning efficacy was generally lower and ranged between 5% and 15%. The lowest values were observed in G-CSF treated peripheral blood in which colonies were grown from only 1%-9% of the CD34+ MNC. Due to the variable numbers of CD34+ lymphoid and/or more committed myeloid precursors which form either no colonies or only clusters, there was a greater variation and a lower cloning efficiency in the latter two cell sources. In conclusion, one colour CD34 analysis of cord blood MNC and untreated or GM-CSF treated peripheral blood MNC provides reliable results with respect to the content of myeloid progenitors. Analysis of bone marrow MNC and G-CSF treated peripheral blood MNC requires two colour staining using CD34 and CD45RA.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本综述总结了我们关于CD34阳性单核细胞(MNC)的流式细胞术分析以及克隆形成试验中髓系造血祖细胞集落形成的实验。我们检测了通过密度离心从骨髓、脐带血和外周血中分离出的MNC。后一种样本要么来自未接受生长因子的骨髓抑制治疗恢复期患者,要么来自接受G-CSF或GM-CSF治疗的患者。我们试图将CD34分析获得的结果与在基于甲基纤维素的克隆形成试验中培养14天后测定的克隆效率相关联。在脐带血中观察到最高的克隆效率(60%-100%),然而,在未经治疗和GM-CSF治疗的外周血样本中发现了良好的相关性,其中平均50%和20%的CD34阳性MNC数量产生了髓系集落。在骨髓中,克隆效率通常较低,在5%至15%之间。在G-CSF治疗的外周血中观察到最低值,其中仅1%-9%的CD34+MNC形成了集落。由于形成无集落或仅形成簇的CD34+淋巴细胞和/或更定向的髓系前体细胞数量可变,后两种细胞来源的变异性更大且克隆效率更低。总之,对脐带血MNC以及未经治疗或GM-CSF治疗的外周血MNC进行单色CD34分析,就髓系祖细胞含量而言可提供可靠结果。对骨髓MNC和G-CSF治疗的外周血MNC进行分析需要使用CD34和CD45RA进行双色染色。(摘要截于250字)

相似文献

1
Use of flow cytometric CD34 analysis to quantify hematopoietic progenitor cells.使用流式细胞术CD34分析来定量造血祖细胞。
Leuk Lymphoma. 1993 Aug;10(6):443-51. doi: 10.3109/10428199309148201.
2
Rapid discrimination of early CD34+ myeloid progenitors using CD45-RA analysis.使用CD45-RA分析快速鉴别早期CD34+髓系祖细胞。
Blood. 1993 May 1;81(9):2301-9.
3
Harvesting, characterization, and culture of CD34+ cells from human bone marrow, peripheral blood, and cord blood.从人骨髓、外周血和脐带血中获取、鉴定及培养CD34+细胞。
Blood Cells. 1994;20(2-3):411-23.
4
Phenotypic analysis and characterization of CD34+ cells from normal human bone marrow, cord blood, peripheral blood, and mobilized peripheral blood from patients undergoing autologous stem cell transplantation.对来自正常人类骨髓、脐带血、外周血以及接受自体干细胞移植患者的动员外周血中的CD34+细胞进行表型分析和特征鉴定。
Clin Immunol Immunopathol. 1994 Jan;70(1):10-8. doi: 10.1006/clin.1994.1003.
5
The composition of CD34 subpopulations differs between bone marrow, blood and cord blood.CD34亚群的组成在骨髓、血液和脐带血之间存在差异。
Bone Marrow Transplant. 1996 Feb;17(2):169-78.
6
Interleukin-11 stimulates the proliferation of human hematopoietic CD34+ and CD34+CD33-DR- cells and synergizes with stem cell factor, interleukin-3, and granulocyte-macrophage colony-stimulating factor.白细胞介素-11刺激人造血CD34+和CD34+CD33-DR-细胞的增殖,并与干细胞因子、白细胞介素-3和粒细胞-巨噬细胞集落刺激因子协同作用。
Exp Hematol. 1993 Dec;21(13):1668-72.
7
Primitive multilineage progenitor cells predominate in peripheral blood early after mobilization with high-dose cyclophosphamide and GM-CSF or G-CSF.在用大剂量环磷酰胺和粒细胞巨噬细胞集落刺激因子(GM-CSF)或粒细胞集落刺激因子(G-CSF)动员后早期,外周血中原始多谱系祖细胞占主导。
Leukemia. 1994 Dec;8(12):2194-9.
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Lack of DNA synthesis among CD34+ cells in cord blood and in cytokine-mobilized blood.
Br J Haematol. 1996 Feb;92(2):255-62. doi: 10.1046/j.1365-2141.1996.d01-1473.x.
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Pluripotent and lineage-committed CD34+ subsets in leukapheresis products mobilized by G-CSF, GM-CSF vs. a combination of both.由粒细胞集落刺激因子(G-CSF)、粒细胞-巨噬细胞集落刺激因子(GM-CSF)或两者联合动员的白细胞分离产物中的多能和定向分化CD34+亚群。
Exp Hematol. 1996 Nov;24(13):1460-8.
10
[Low-dose granulocyte colony-stimulating factor combined with granulocyte-macrophage colony-stimulating factor for mobilizing peripheral CD34+ hematopoietic progenitor cells].低剂量粒细胞集落刺激因子联合粒细胞-巨噬细胞集落刺激因子用于动员外周血CD34+造血祖细胞
Di Yi Jun Yi Da Xue Xue Bao. 2004 Sep;24(9):1051-2.

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