首页> 外文期刊>BMC Physiology >Extended flow cytometry characterization of normal bone marrow progenitor cells by simultaneous detection of aldehyde dehydrogenase and early hematopoietic antigens: implication for erythroid differentiation studies
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Extended flow cytometry characterization of normal bone marrow progenitor cells by simultaneous detection of aldehyde dehydrogenase and early hematopoietic antigens: implication for erythroid differentiation studies

机译:同时检测醛脱氢酶和早期造血抗原的正常骨髓祖细胞的扩展流式细胞术表征:对红系分化研究的意义

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Background Aldehyde dehydrogenase (ALDH) is a cytosolic enzyme highly expressed in hematopoietic precursors from cord blood and granulocyte-colony stimulating factor mobilized peripheral blood, as well as in bone marrow from patients with acute myeloblastic leukemia. As regards human normal bone marrow, detailed characterization of ALDH+ cells has been addressed by one single study (Gentry et al, 2007). The goal of our work was to provide new information about the dissection of normal bone marrow progenitor cells based upon the simultaneous detection by flow cytometry of ALDH and early hematopoietic antigens, with particular attention to the expression of ALDH on erythroid precursors. To this aim, we used three kinds of approach: i) multidimensional analytical flow cytometry, detecting ALDH and early hematopoietic antigens in normal bone marrow; ii) fluorescence activated cell sorting of distinct subpopulations of progenitor cells, followed by in vitro induction of erythroid differentiation; iii) detection of ALDH+ cellular subsets in bone marrow from pure red cell aplasia patients. Results In normal bone marrow, we identified three populations of cells, namely ALDH+CD34+, ALDH-CD34+ and ALDH+CD34- (median percentages were 0.52, 0.53 and 0.57, respectively). As compared to ALDH-CD34+ cells, ALDH+CD34+ cells expressed the phenotypic profile of primitive hematopoietic progenitor cells, with brighter expression of CD117 and CD133, accompanied by lower display of CD38 and CD45RA. Of interest, ALDH+CD34- population disclosed a straightforward erythroid commitment, on the basis of three orders of evidences. First of all, ALDH+CD34- cells showed a CD71bright, CD105+, CD45- phenotype. Secondly, induction of differentiation experiments evidenced a clear-cut expression of glycophorin A (CD235a). Finally, ALDH+CD34- precursors were not detectable in patients with pure red cell aplasia (PRCA). Conclusion Our study, comparing surface antigen expression of ALDH+/CD34+, ALDH-/CD34+ and ALDH+/CD34- progenitor cell subsets in human bone marrow, clearly indicated that ALDH+CD34- cells are mainly committed towards erythropoiesis. To the best of our knowledge this finding is new and could be useful for basic studies about normal erythropoietic differentiation as well as for enabling the employment of ALDH as a red cell marker in polychromatic flow cytometry characterization of bone marrow from patients with aplastic anemia and myelodysplasia.
机译:背景醛脱氢酶(ALDH)是一种细胞溶质酶,在脐血和粒细胞集落刺激因子动员的外周血的造血前体以及急性粒细胞性白血病患者的骨髓中高表达。关于人类正常骨髓,ALDH + 细胞的详细表征已通过一项单独的研究解决(Gentry等,2007)。我们的工作目标是根据流式细胞术同时检测ALDH和早期造血抗原,提供有关正常骨髓祖细胞解剖的新信息,尤其要注意红细胞前体上ALDH的表达。为此,我们采用了三种方法:i)多维分析流式细胞术,检测正常骨髓中的ALDH和早期造血抗原; ii)荧光激活的祖细胞不同亚群的细胞分选,然后体外诱导红系分化; iii)检测纯红细胞发育不良患者骨髓中ALDH + 细胞亚群。结果在正常骨髓中,我们鉴定出三个细胞群,即ALDH + CD34 + ,ALDH - CD34 + 和ALDH + CD34 -(中位数分别为0.52、0.53和0.57)。与ALDH - CD34 + 细胞相比,ALDH + CD34 + 细胞表达原始造血祖细胞的表型特征。细胞,CD117和CD133的表达较亮,同时CD38和CD45RA的表达较低。有趣的是,ALDH + CD34 -人群根据三级证据公开了直接的类红血球承诺。首先,ALDH + CD34 -细胞显示CD71 亮,CD105 + ,CD45 - 表型。其次,诱导分化实验证明了糖蛋白A(CD235a)的清晰表达。最后,在纯红细胞发育不全(PRCA)患者中未检出ALDH + CD34 -。结论我们的研究比较了ALDH + / CD34 + ,ALDH - / CD34 + 和ALDH的表面抗原表达人骨髓中的 + / CD34 -祖细胞亚群清楚地表明,ALDH + CD34 -细胞主要致力于促红细胞生成。据我们所知,这一发现是新的,对于正常的促红细胞分化的基础研究以及使ALDH作为红细胞标记物在再生障碍性贫血和骨髓增生异常患者骨髓多色流式细胞术表征中的应用很有用。 。

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