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通过细胞内流式细胞术和生物素标记分析优化 SARS-CoV-2 肽刺激和细胞因子分泌的检测。

Optimisation of SARS-CoV-2 peptide stimulation and measurement of cytokine output by intracellular flow cytometry and bio-plex analysis.

机构信息

Immunology Department at Lancashire Teaching Hospitals, United Kingdom.

Immunology Department at Lancashire Teaching Hospitals, United Kingdom.

出版信息

J Immunol Methods. 2023 Nov;522:113556. doi: 10.1016/j.jim.2023.113556. Epub 2023 Sep 6.

Abstract

Our study was conducted to optimise a peptide stimulation and an intracellular cytokine staining protocol, alongside Bio-Plex supernatant analysis, for use in patients who had previously contracted SARS-CoV-2 or received vaccination against this virus in a clinical laboratory setting. Peripheral Blood Mononuclear Cell extraction and cryopreservation allowed for cells to be stored long term and enhanced logistical processing of samples. Viability and functionality of cells were analysed by flow cytometric methodology using viability staining monoclonal antibodies conjugated to fluorochromes. Antibiotics and Benzonase Nuclease did not impact lymphocyte viability and so cell culture conditions were optimised in terms of retaining viability and functionality. Optimisation of peptide stimulation with Influenza and SARS-CoV-2 peptide pools was conducted through stimulation experiments assessing peptide concentration, peptide stimulation time and enrichment studies to increase precursor frequency. Cytokine output was measured by flow cytometry and Bio-Plex methodologies, with positive cytokine readings predominantly detected in the cell culture supernatant. Analysis of both intracellular and extracellular compartments allowed for detection of cytokines and established the retained cellular functionality post cryopreservation. These results also indicated that our peptide stimulation method can generate antigen-specific T lymphocytes upon exposure to SARS-CoV-2 peptide pools. Moreover, the measurement of specific cytokines could be applied to an array of conditions, such as chronic inflammatory diseases, but to also offer an alternative method of measuring vaccine responses. This platform is easily adaptable and can remain relevant alongside changing vaccine composition, thus ensuring its applicability to future vaccination programmes.

摘要

我们的研究旨在优化一种肽刺激和细胞内细胞因子染色方案,以及 Bio-Plex 上清液分析,以便在临床实验室环境中用于先前感染过 SARS-CoV-2 或接种过该病毒疫苗的患者。外周血单核细胞提取和冷冻保存允许长期储存细胞,并增强了样品的物流处理。使用荧光染料偶联的活细胞染色单克隆抗体通过流式细胞术方法分析细胞的活力和功能。抗生素和苯甲酸钠核酸酶不会影响淋巴细胞的活力,因此优化了细胞培养条件,以保持活力和功能。通过评估肽浓度、肽刺激时间和富集研究来增加前体频率的刺激实验来优化流感和 SARS-CoV-2 肽库的肽刺激。通过流式细胞术和 Bio-Plex 方法测量细胞因子的输出,阳性细胞因子读数主要在细胞培养上清液中检测到。细胞内和细胞外区室的分析允许检测细胞因子,并在冷冻保存后保留细胞功能。这些结果还表明,我们的肽刺激方法可以在接触 SARS-CoV-2 肽库后产生针对抗原的 T 淋巴细胞。此外,特定细胞因子的测量可以应用于一系列条件,例如慢性炎症性疾病,但也提供了一种测量疫苗反应的替代方法。该平台易于适应,可以与不断变化的疫苗成分保持相关性,从而确保其适用于未来的疫苗接种计划。

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