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Exploring the Limitations of Peripheral Blood Transcriptional Biomarkers in Predicting Influenza Vaccine Responsiveness

机译:探索外周血转录生物标志物在预测流感疫苗反应性方面的局限性

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Systems biology has been recently applied to vaccinology to better understand immunological responses to the influenza vaccine. Particular attention has been paid to the identification of early signatures capable of predicting vaccine immunogenicity. Building from previous studies, we employed a recently established algorithm for signature-based clustering of expression profiles, SCUDO, to provide new insights into why blood-derived transcriptome biomarkers often fail to predict the seroresponse to the influenza virus vaccination. Specifically, preexisting immunity against one or more vaccine antigens, which was found to negatively affect the seroresponse, was identified as a confounding factor able to decouple early transcriptome from later antibody responses, resulting in the degradation of a biomarker predictive power. Finally, the broadly accepted definition of seroresponse to influenza virus vaccine, represented by the maximum response across the vaccine-targeted strains, was compared to a composite measure integrating the responses against all strains. This analysis revealed that composite measures provide a more accurate assessment of the seroresponse to multicomponent influenza vaccines.
机译:系统生物学最近已应用于疫苗学,以更好地了解对流感疫苗的免疫反应。已经特别注意鉴定能够预测疫苗免疫原性的早期特征。基于以前的研究,我们采用了最近建立的基于表达特征的基于特征的聚类算法SCUDO,以提供新的见解,以了解为什么血源转录组生物标志物经常无法预测流感病毒疫苗接种的血清反应。具体而言,已发现针对一种或多种疫苗抗原的先前存在的免疫力会对血清反应产生负面影响,这被认为是一个混杂因素,能够使早期转录组与以后的抗体反应脱钩,从而导致生物标志物预测能力的下降。最后,将针对流感病毒疫苗的血清反应的广泛接受的定义(以针对疫苗的菌株的最大应答为代表)与综合针对所有菌株的应答的综合指标进行了比较。这项分析表明,综合措施可提供对多组分流感疫苗血清反应的更准确评估。

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