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Cryopreservation-related loss of antigen-specific IFNγ producing CD4+ T-cells can skew immunogenicity data in vaccine trials: Lessons from a malaria vaccine trial substudy

机译:与冷冻保存相关的产生抗原特异性IFNγ的CD4 + T细胞的丢失可能会歪曲疫苗试验中的免疫原性数据:疟疾疫苗试验子研究的教训

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摘要

Ex vivo functional immunoassays such as ELISpot and intracellular cytokine staining (ICS) by flow cytometry are crucial tools in vaccine development both in the identification of novel immunogenic targets and in the immunological assessment of samples from clinical trials. Cryopreservation and subsequent thawing of PBMCs via validated processes has become a mainstay of clinical trials due to processing restrictions inherent in the disparate location and capacity of trial centres, and also in the need to standardize biological assays at central testing facilities. Logistical and financial requirement to batch process samples from multiple study timepoints are also key. We used ELISpot and ICS assays to assess antigen-specific immunogenicity in blood samples taken from subjects enrolled in a phase II malaria heterologous prime-boost vaccine trial and showed that the freeze thaw process can result in a 3–5-fold reduction of malaria antigen-specific IFNγ-producing CD3+CD4+ effector populations from PBMC samples taken post vaccination. We have also demonstrated that peptide responsive CD8+ T cells are relatively unaffected, as well as CD4+ T cell populations that do not produce IFNγ. These findings contribute to a growing body of data that could be consolidated and synthesised as guidelines for clinical trials with the aim of increasing the efficiency of vaccine development pipelines.
机译:体外功能性免疫分析,例如ELISpot和通过流式细胞术进行的细胞内细胞因子染色(ICS),是疫苗开发中新的免疫原性靶标的鉴定和临床试验样品的免疫学评估中的关键工具。由于试验中心位置和能力的差异以及固有的标准化要求,导致冷冻验证和随后通过验证过程解冻PBMC成为临床试验的主要内容。从多个研究时间点批量处理样品的后勤和财务要求也很关键。我们使用ELISpot和ICS分析法评估了从II期疟疾异源初免疫苗试验的受试者中采集的血液样本中的抗原特异性免疫原性,结果表明,冻融过程可导致疟疾抗原减少3-5倍接种疫苗后的PBMC样本中产生特异性IFNγ的CD3 + CD4 + 效应子群体。我们还证明了肽反应性CD8 + T细胞以及不产生IFNγ的CD4 + T细胞群体相对不受影响。这些发现有助于增加数据量,这些数据可以作为临床试验的指南进行合并和综合,以提高疫苗开发流程的效率。

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