人白血病细胞多变量血流分析测定的细胞凋亡耐受分布的随机建模。

Cytometry Pub Date : 2000-04-01
D A Fennell, F E Cotter
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引用次数: 0

摘要

背景:细胞荧光分析允许单细胞分辨全部或无程序性细胞死亡(凋亡)反应,并允许直接测量细胞凋亡敏感性的累积频率分布(cfd),从中可以估计中位细胞凋亡耐受。对肿瘤细胞群体中细胞凋亡敏感性的可靠估计提供了一种准确确定药物诱导的细胞凋亡敏感性变化或比较细胞群体对不同细胞凋亡诱导剂的反应的手段。方法:采用磷酸基丝氨酸表面表达和线粒体膜电位耗散(DeltaPsi(m))测定BV173白血病细胞中VP-16(依托泊苷)诱导凋亡的cfd。cfd采用改进的Hill方程建模,采用四参数非线性回归,从中估计中位细胞凋亡耐受(K)。结果:通过DeltaPsi(m)塌陷和膜不对称性丧失的cfd非线性回归分析估计中位细胞凋亡耐受(K)。通过对100个模拟差价合约的非线性回归分析,得出K的误差分布呈不对称分布。K的不对称似然区间迭代计算,从而提供了实验误差的度量。结论:基于分布的细胞凋亡检测方法使用多变量流分析,为研究肿瘤细胞对细胞凋亡治疗反应的表型基础提供了强大的定量技术,允许在细胞凋亡易感性的基础上分离细胞群。
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Stochastic modeling of apoptosis tolerance distributions measured by multivariate flow analysis of human leukemia cells.

Background: Cytofluorometric analysis allows single-cell resolution of all-or-none programmed cell death (apoptosis) responses and permits direct measurement of cumulative frequency distributions (CFDs) of apoptosis sensitivity from which the median apoptosis tolerance can be estimated. Robust estimation of susceptibility to apoptosis within neoplastic cell populations provides a means of either accurately determining pharmacologically induced changes in apoptosis sensitivity or comparing cell population responses to different apoptosis inducers.

Methods: Experimentally determined CFDs for VP-16 (etoposide)-induced apoptosis were measured by phosphotidylserine surface expression and mitochondrial membrane potential dissipation (DeltaPsi(m)) in BV173 leukemia cells. CFDs were modelled by a modified Hill equation using a four-parameter nonlinear regression from which median apoptosis tolerance (K) was estimated.

Results: Median apoptosis tolerance (K) was estimated from nonlinear regression analysis of CFDs for DeltaPsi(m) collapse and loss of membrane asymmetry. The error distribution of K determined from nonlinear regression analysis of 100 simulated CFDs was shown to exhibit an asymmetrical distribution. The asymmetrical likelihood intervals for K were computed iteratively, thereby providing a measure of experimental error.

Conclusions: A distribution-based approach to apoptosis assay using multivariate flow analysis offers a powerful, quantitative technique for investigating the phenotypical basis of neoplastic cell responsiveness to apoptosis therapy, permitting separation of cell populations on the basis of apoptosis susceptibility.

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