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A method to address between-subject heterogeneity for identification of principal surrogate markers in repeated low-dose challenge HIV vaccine studies

机译:在重复低剂量挑战艾滋病毒疫苗研究中解决鉴定主体异质性的方法,用于鉴定主要替代标志物艾滋病毒疫苗研究

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Repeated low-dose challenge designs in nonhuman primate studies have recently received attention in the literature as a means of evaluating vaccines for HIV prevention and identifying immune surrogates for their protective effects. Existing methods for surrogate identification in this type of study design rely on the assumption of homogeneity across subjects (namely, independent infection risks after each challenge within each subject and conditional on covariates). In practice, random variation across subjects is likely to occur because of unmeasured biologic factors. Failure to account for this heterogeneity or within-subject correlation can result in biased inference regarding the surrogate value of immune biomarkers and underpowered study designs for detecting surrogate endpoints. In this paper, we adopt a discrete-time survival model with random effects to account for between-subject heterogeneity, and we develop estimators and testing procedures for evaluating principal surrogacy of immune biomarkers. Simulation studies reveal that the heterogeneous model achieves substantial bias reduction compared to the homogeneous model, with little cost of efficiency. We recommend the use of this heterogeneous model as a complementary tool to existing methods when designing and analyzing repeated low-dose challenge studies for evaluating surrogate endpoints.
机译:在非人族灵长类动物研究中重复的低剂量挑战设计最近在文献中得到了注意力,作为评估艾滋病毒预防疫苗和鉴定其保护作用的免疫替代品的方法。在这种类型的研究设计中替代鉴定的现有方法依赖于跨对象的均匀性的假设(即每个受试者内的每个受试者的挑战后的独立感染风险)。在实践中,由于未测量的生物因素,可能发生对象的随机变化。未能考虑这种异质性或对象内相关性可以导致关于免疫生物标志物的替代价值和检测替代终点的动力研究设计的偏见推理。在本文中,我们采用了一种离散时间生存模型,随机效应,占对象之间的异质性,我们开发了评估免疫生物标志物的主要代孕代的估算和测试程序。仿真研究表明,与均匀模型相比,异构模型实现了大量偏差,效率成本很少。我们建议使用这种异质模型作为在设计和分析重复的低剂量攻击研究时对现有方法的互补工具,用于评估替代端点的重复低剂量攻击性研究。

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