流式细胞术分析改善了间质单层细胞存活的定量。

Cytometry Pub Date : 2000-05-01
S S Winter, J J Sweatman, R S Larson
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引用次数: 0

摘要

背景:白血病细胞在骨髓基质上的体外存活是研究细胞存活和白血病发生的重要手段。目前,白血病细胞的体外存活是通过在基质细胞单层上共培养来测定的。在这些试验中,我们假设两个重要的误差来源可能是通过流量的变化或供体基质细胞的变化引入的。方法:采用先前报道的共培养实验,将白血病细胞维持在骨髓基质细胞上。结果:确定了两种优化共培养试验的方法。首先,将具有良好荧光特性的生物惰性微珠添加到每个样品中,以数学方式调整体积采集中基于流量的变化。与不含荧光珠或使用血球计手动计数的样品相比,将荧光珠纳入基本基质细胞测定的变异系数显着降低。其次,为了尽量减少骨髓造血功能在供者之间的差异,使用了一种已知支持造血的贴壁基质细胞系(HS-5)。当使用正常人供体基质细胞时,观察到来自不同供体的基质细胞的白血病细胞存活率的差异。相比之下,在HS-5单层上未见白血病细胞存活的统计学显著变异性。最后,我们证明,病人来源的白血病样本可以检查细胞存活使用这些修饰。结论:荧光珠和造血支持基质细胞系的新使用使得基质支持细胞存活的定量更具可重复性、准确性,并且适用于患者来源的样品。这些基于流式细胞术的细胞定量的改进是在白血病生物学和治疗研究中建立基质细胞检测作用的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved quantification of cell survival on stromal monolayers by flow cytometric analyses.

Background: The ex vivo survival of leukemic cells maintained on bone marrow stroma is an important tool for the investigation of cell survival and leukemogenesis. Currently, ex vivo survival of leukemic cell survival is measured by coculture on stromal cell monolayers. In these assays, we postulated that two important sources of error might be introduced through either variations in flow volume or in donor stromal cells.

Methods: A previously reported coculture assay that maintains leukemic cells on bone marrow stromal cells was employed.

Results: We identified two means of optimizing the coculture assay. First, biologically inert beads having well-characterized fluorescent properties were added to each sample to mathematically adjust for flow-based variations in volume acquisition. The inclusion of fluorescent beads to the basic stromal cell assay showed a significantly lower coefficient of variation as compared to samples analyzed without beads or manually counted using a hemacytometer. Second, in order to minimize variability in bone marrow hematopoietic function between donors, an adherent stromal cell line known to support hematopoiesis (HS-5) was used. When normal human donor stromal cells were used, variability in the survival of leukemic cells was observed on stromal cells derived from different donors. In contrast, statistically significant variability in survival of leukemic cells was not seen on HS-5 monolayers. Finally, we demonstrate that patient-derived leukemic samples may be examined for cell survival using these modifications.

Conclusions: The novel use of fluorescent beads and a hematopoietic-supportive stromal cell line together makes the quantification of stroma-supported cell survival more reproducible, accurate, and amenable to patient-derived samples. These improvements in flow cytometry-based cell quantification are an important step in establishing a role for stromal cell assays in the study of leukemia biology and therapy.

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