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全血双刺激检测法用于真菌和病毒病原体宿主免疫的抗原特异性分析。

Whole Blood Assay with Dual Co-Stimulation for Antigen-Specific Analysis of Host Immunity to Fungal and Viral Pathogens.

机构信息

Institute for Laboratory Medicine and Microbiology, University Hospital Augsburg;

Department of Internal Medicine II, University Hospital of Wuerzburg.

出版信息

J Vis Exp. 2024 Sep 20(211). doi: 10.3791/66593.

Abstract

Rapid and resource-efficient sample processing, high throughput, and high robustness are critical for effective scientific and clinical application of advanced antigen-specific immunoassays. Traditionally, such immunoassays, especially antigen-specific T-cell analysis by flow cytometry or enzyme-linked immunosorbent spot assays, often rely on the isolation of peripheral blood mononuclear cells. This process is time-consuming, subject to many pre-analytic confounders, and requires large blood volumes. Whole blood-based assays provide a facile alternative with increased pre-analytic robustness and lower blood volume requirements. Furthermore, whole blood-based assays allow for the preservation of inter-cellular interactions that are not captured by assays using isolated cell subsets. Recently, a refined whole blood immunoassay with dual anti-CD28 and anti-CD49d co-stimulation for comprehensive analysis of both antigen-specific T-cell functions and complex intercellular interactions in response to various fungal and viral antigens has been proposed. This protocol provides guidance for the preparation of stimulation tubes, blood stimulation, and downstream sample processing for flow cytometry, cytokine secretion assays, and transcriptional analyses. This includes a validated and functionally equivalent, previously unpublished, low-volume protocol (250 µL) to make flow cytometric and cytokine-based T-cell monitoring more accessible for studies in pediatric patients or preclinical studies in small animals (e.g., mice). Altogether, these protocols provide a versatile toolbox for complex antigen-specific immune analysis in both clinical and translational research settings.

摘要

快速且资源高效的样本处理、高通量和高稳健性对于先进的抗原特异性免疫分析在科学和临床应用中的有效实施至关重要。传统上,此类免疫分析,特别是通过流式细胞术或酶联免疫斑点分析进行的抗原特异性 T 细胞分析,通常依赖于外周血单核细胞的分离。该过程既耗时,又容易受到许多分析前混杂因素的影响,且需要大量的血液量。基于全血的检测方法提供了一种简便的替代方法,具有更高的分析前稳健性和更低的血液量需求。此外,基于全血的检测方法允许保留细胞间相互作用,而这些相互作用是使用分离的细胞亚群进行的检测无法捕捉到的。最近,提出了一种经过改进的全血免疫分析方法,使用双重抗 CD28 和抗 CD49d 共刺激来全面分析针对各种真菌和病毒抗原的抗原特异性 T 细胞功能和复杂的细胞间相互作用。该方案为流式细胞术、细胞因子分泌分析和转录分析提供了刺激管制备、血液刺激和下游样本处理的指导。这包括一个经过验证且功能等效的、以前未发表的、低体积方案(250 µL),使流式细胞术和基于细胞因子的 T 细胞监测更易于在儿科患者的研究或小动物(例如,小鼠)的临床前研究中进行。总之,这些方案为临床和转化研究环境中的复杂抗原特异性免疫分析提供了一个多功能的工具包。

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