利用病原体遗传距离评估疫苗效力趋势。

Journal of the SFdS Pub Date : 2020-07-01
David Benkeser, Michal Juraska, Peter B Gilbert
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引用次数: 0

摘要

预防性疫苗是减少传染病负担的有效公共卫生干预措施,但对一些主要传染病尚未开发。疫苗筛选分析研究疫苗的效力是否以及如何随传染性病原体的遗传而变化,这可能有助于指导未来疫苗的开发和部署。筛选分析的标准统计方法比较疫苗预防感染和由病原体类型引起的疾病的效果,这些病原体类型被分为两种,即在基因上接近或远离疫苗结构内的参考病原体菌株。例如,近可由在多重比对中考虑的所有氨基酸位置上的氨基酸同一性来定义,远可由至少一个氨基酸差异来定义。另一种方法是研究疫苗的功效,作为从病原体到参考疫苗菌株的遗传距离的函数,其中距离累积在一组氨基酸位置上。我们提出了一种非参数方法来估计和测试疫苗在遗传距离上的影响趋势。我们通过模拟说明了估计器的工作特性,并将该方法应用于最近的预防性疟疾疫苗功效试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing trends in vaccine efficacy by pathogen genetic distance.

Preventive vaccines are an effective public health intervention for reducing the burden of infectious diseases, but have yet to be developed for several major infectious diseases. Vaccine sieve analysis studies whether and how the efficacy of a vaccine varies with the genetics of the infectious pathogen, which may help guide future vaccine development and deployment. A standard statistical approach to sieve analysis compares the effect of the vaccine to prevent infection and disease caused by pathogen types defined dichotomously as genetically near or far from a reference pathogen strain inside the vaccine construct. For example, near may be defined by amino acid identity at all amino acid positions considered in a multiple alignment and far defined by at least one amino acid difference. An alternative approach is to study the efficacy of the vaccine as a function of genetic distance from a pathogen to a reference vaccine strain where the distance cumulates over the set of amino acid positions. We propose a nonparametric method for estimating and testing the trend in the effect of a vaccine across genetic distance. We illustrate the operating characteristics of the estimator via simulation and apply the method to a recent preventive malaria vaccine efficacy trial.

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Journal of the SFdS
Journal of the SFdS STATISTICS & PROBABILITY-
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