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Analysis of factorial time-course microarrays with application to a clinical study of burn injury

机译:析因时程微阵列及其在烧伤临床研究中的应用

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摘要

Time-course microarray experiments are capable of capturing dynamic gene expression profiles. It is important to study how these dynamic profiles depend on the multiple factors that characterize the experimental condition under which the time course is observed. Analytic methods are needed to simultaneously handle the time course and factorial structure in the data. We developed a method to evaluate factor effects by pooling information across the time course while accounting for multiple testing and nonnormality of the microarray data. The method effectively extracts gene-specific response features and models their dependency on the experimental factors. Both longitudinal and cross-sectional time-course data can be handled by our approach. The method was used to analyze the impact of age on the temporal gene response to burn injury in a large-scale clinical study. Our analysis reveals that 21% of the genes responsive to burn are age-specific, among which expressions of mitochondria and immunoglobulin genes are differentially perturbed in pediatric and adult patients by burn injury. These new findings in the body’s response to burn injury between children and adults support further investigations of therapeutic options targeting specific age groups. The methodology proposed here has been implemented in R package “TANOVA” and submitted to the Comprehensive R Archive Network at . It is also available for download at .
机译:时程微阵列实验能够捕获动态基因表达谱。重要的是研究这些动态轮廓如何取决于表征时间过程的实验条件的多个因素。需要使用分析方法来同时处理数据中的时间过程和阶乘结构。我们开发了一种方法,可通过在整个时间过程中合并信息,同时考虑多次测试和微阵列数据的非正常性来评估因素影响。该方法有效地提取了基因特异性反应特征,并模拟了它们对实验因素的依赖性。纵向和横截面时程数据都可以通过我们的方法来处理。在大规模的临床研究中,该方法用于分析年龄对烧伤的时间基因反应的影响。我们的分析表明,对烧伤有反应的基因中有21%是针对年龄的,其中儿童和成人患者因烧伤而受到线粒体和免疫球蛋白基因表达的差异性干扰。人体对儿童和成人之间烧伤的反应的这些新发现支持针对特定年龄组的治疗选择的进一步研究。此处提出的方法已在R包“ TANOVA”中实施,并已提交至的综合R存档网络。也可以从下载。

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