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首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Comparison of flow cytometry and laser scanning cytometry for the analysis of CD34(+) hematopoietic stem cells
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Comparison of flow cytometry and laser scanning cytometry for the analysis of CD34(+) hematopoietic stem cells

机译:流式细胞术和激光扫描细胞术用于分析CD34(+)造血干细胞的比较

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Background: Characterization of hematopoietic stem cells (HSCs) by laser scanning cytometry (LSC) was compared with conventional flow cytometry (FCM). The method was evaluated for application in the development of advanced cell culture substrates that were supposed to support the ex vivo expansion of HSC. For this purpose, adherent HSCs were grown in culture on thin polymer films coated with reconstituted collagen I fibrils and subsequently analyzed by LSC. Methods: CD34(+) HSCs were isolated from cord blood by immunomagnetic separation and cultivated on polymer films coated with reconstituted collagen I fibrils. Cell surface antigens (CD34, CD29) were stained with antibodies, and nuclei were labeled with a DNA stain (TO-PRO-3 iodide) that does not interfere with the fluorochromes of the antibodies. Fluorescence intensity of the adherent cells was measured by means of LSC. Before and after in vitro expansion for time periods of up to 7 days, suspension cells were analyzed with LSC and FCM. Results: LSC-based analysis enabled reliable quantification of CD34(+) cells with bright antigen expression before cell culture. At this stage, LSC and FCM data for CD34 expression at given HSC samples largely coincided. After in vitro expansion, LSC data deviated from FCM data for cells with dim CD34 antigen expression, whereas the fluorescence intensity of the CD29 antigen remained comparable. The deviation between LSC and FCM data for CD34(dim) was attributed to the better resolution of weak fluorescence by FCM. Based on the preceding evaluation of the method, LSC analysis could be applied to characterize HSCs cultivated on collagen I-coated polymer films without detachment of the cells from the substrate. Conclusions: LSC-based analysis allows for the automated evaluation of adherent HSCs. Although resolution of weakly expressed antigens can be achieved more precisely with FCM, the method provides a valuable tool to study interactions of HSCs with bioartificial substrates. (C) 2004 Wiley-Liss, Inc. [References: 18]
机译:背景:通过激光扫描细胞术(LSC)与常规流式细胞术(FCM)比较了造血干细胞(HSC)的特征。评估了该方法在开发先进的细胞培养底物中的应用,该底物被认为可以支持HSC的体外扩增。为了这个目的,使粘附的HSC在覆盖有重构的I型胶原原纤维的聚合物薄膜上培养,然后通过LSC进行分析。方法:通过免疫磁分离从脐带血中分离CD34(+)HSC,并在涂有重组I型胶原原纤维的聚合物膜上培养。细胞表面抗原(CD34,CD29)用抗体染色,细胞核用不干扰抗体荧光染料的DNA染色剂(TO-PRO-3碘化物)标记。通过LSC测量贴壁细胞的荧光强度。在体外扩增长达7天的前后,用LSC和FCM分析悬浮细胞。结果:基于LSC的分析能够可靠地定量培养细胞前具有明亮抗原表达的CD34(+)细胞。在此阶段,在给定的HSC样本中CD34表达的LSC和FCM数据基本重合。在体外扩增后,具有昏暗CD34抗原表达的细胞的LSC数据偏离了FCM数据,而CD29抗原的荧光强度仍然相当。 LSC和FCM数据中CD34(dim)之间的偏差归因于FCM对弱荧光的更好分辨。基于该方法的先前评估,可以将LSC分析应用于表征在胶原I涂层的聚合物膜上培养的HSC,而细胞不会从底物上脱落。结论:基于LSC的分析可对附着的HSC进行自动评估。尽管用FCM可以更精确地解决弱表达抗原的问题,但该方法为研究HSC与生物人工底物之间的相互作用提供了有价值的工具。 (C)2004 Wiley-Liss,Inc. [参考:18]

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