在肯尼亚Msambweni的一个儿科队列中,使用一种新型小型化自动化全血细胞分析系统和大量细胞术对登革热和基孔肯雅病毒反应进行全面免疫分析。

Q3 Medicine
Sangeeta Kowli, Amy Krystosik, Matthew Hale, Francis Mutuku, Jael S Amugongo, Said L Malumbo, Phillip K Chebii, Priscillah W Maina, Kavita Mathi, Elysse N Grossi-Soyster, Mary Rieck, Angelle Desiree LaBeaud, Holden T Maecker
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引用次数: 0

摘要

基孔肯雅热(CHIKV)和登革热(DENV)是蚊媒病毒,通常在偏远地区引起严重流行病。我们对这些病原体的理解的一个限制是进行细胞免疫反应测定的困难。为了填补这一空白,我们开发了一种新型的小型化自动化系统,能够处理250 μl的全血进行高通量细胞分析。在对肯尼亚Msambweni的一个儿科队列进行的一项实地研究中,我们使用我们的系统在三种条件下处理了133份全血样本:无刺激和用CHIKV或DENV肽池刺激。这些样本进行了细胞of或流式细胞术分析,以评估病毒特异性记忆T细胞反应和表型。81份参与者样本的细胞因子分析显示,对CHIKV和DENV有显著的细胞因子反应,特别是IFNγ (P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive immune profiling of dengue and chikungunya viral responses using a novel miniaturized automated whole blood cellular analysis system and mass cytometry in a pediatric cohort in Msambweni, Kenya.

Chikungunya (CHIKV) and dengue (DENV) are mosquito-borne viruses that cause severe epidemics, often in remote regions. A limitation to our understanding of these pathogens is the difficulty of performing assays of the cellular immune response. To fill this gap, we developed a novel miniaturized automated system capable of processing 250 μl of whole blood for high-throughput cellular analysis. In a field study with a pediatric cohort in Msambweni, Kenya, known for previous exposure to CHIKV and/or DENV, we processed 133 whole blood samples using our system under three conditions: no stimulation, and stimulation with CHIKV or DENV peptide pools. These samples underwent CyTOF or flow cytometry analysis to evaluate virus-specific memory T cell responses and phenotypes. CyTOF analysis of 81 participant samples revealed significant cytokine responses to CHIKV and DENV, particularly IFNγ (P < 0.01 and P < 0.0001, respectively) and TNF-α (P < 0.0001) by γδ T cells. Additionally, a significant TNF-α response was observed in the CD8+ TEMRA memory subset to DENV, albeit to a lesser degree than in γδ T cells. To confirm our CyTOF findings, we employed flow cytometry on the remaining 40 samples using a targeted panel, validating significant TNF-α (P < 0.0001 and P < 0.01) and IFN-γ (P < 0.05) responses by γδ T cells to CHIKV and DENV, respectively. Our study demonstrates that our innovative automated system enables detailed assessment of immune function, particularly beneficial in pediatric populations and resource-limited settings with limited sample volumes. This approach holds promise for advancing our understanding of cellular immune responses to various viral and infectious diseases.

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CiteScore
3.70
自引率
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