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首页> 外文期刊>Cancer genomics & proteomics >Simultaneous Modeling of Concentration-effect and Time-course Patterns in Gene Expression Data from Microarrays
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Simultaneous Modeling of Concentration-effect and Time-course Patterns in Gene Expression Data from Microarrays

机译:微阵列基因表达数据中浓度效应和时程模式的同时建模

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Background: Time-course and concentration-effect experiments with multiple time-points and drug concentrations provide far more valuable information than experiments with just two design-points (treated vs. control), as commonly performed in most microarray studies. Analysis of the data from such complex experiments, however, remains a challenge. Materials and Methods: Here we present a semi-automated method for fitting time profiles and concentration-effect patterns, simultaneously, to gene expression data. The submodels for time-course included exponential increase and decrease models with parameters, such as initial expression level, maximum effect, and rate-constant (or half-time). The submodel for concentration-effect was a 4-parameter Hill model. Results: The method was applied to an Affymetrix HG-U95Av2 dataset consisting of 51 arrays. The specific study focused on the effects of two platinum drugs, cisplatin and oxaliplatin, on A2780 human ovarian carcinoma cells. Replicates were available at most time points and concentrations. Eighteen genes were selected, and after selection, time-course and concentration-effect were modeled simultaneously. Conclusion: Comparisons of model parameters helped to distinguish genes with different expression patterns between the two drug treatments. This overall paradigm can help in understanding the molecular mechanisms of the agents, and the timing of their actions.
机译:背景:与大多数芯片研究中通常进行的只有两个设计点(处理后的对照)相比,具有多个时间点和药物浓度的时程和浓度效应实验所提供的信息要有价值得多。然而,对来自此类复杂实验的数据进行分析仍然是一个挑战。材料和方法:在这里,我们提出了一种半自动的方法,用于同时拟合基因表达数据的时间曲线和浓度效应模式。时程的子模型包括具有参数的指数增加和减少模型,例如初始表达水平,最大效果和速率恒定(或半时间)。浓度效应的子模型是4参数Hill模型。结果:将该方法应用于由51个阵列组成的Affymetrix HG-U95Av2数据集。具体研究集中在两种铂药物(顺铂和奥沙利铂)对A2780人卵巢癌细胞的影响。在大多数时间点和浓度都可以进行复制。选择了18个基因,选择后,同时模拟了时程和浓度效应。结论:模型参数的比较有助于区分两种药物治疗之间具有不同表达模式的基因。这种总体范式可以帮助您了解这些药物的分子机制及其作用的时机。

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