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T细胞文库允许简单并行地生成多个肽特异性人T细胞克隆。

T-cell libraries allow simple parallel generation of multiple peptide-specific human T-cell clones.

作者信息

Theaker Sarah M, Rius Cristina, Greenshields-Watson Alexander, Lloyd Angharad, Trimby Andrew, Fuller Anna, Miles John J, Cole David K, Peakman Mark, Sewell Andrew K, Dolton Garry

机构信息

Division of Infection and Immunity, Cardiff University School of Medicine, Cardiff, UK.

Division of Infection and Immunity, Cardiff University School of Medicine, Cardiff, UK; QIMR Berghofer Medical Research Institute, Brisbane, Queensland 4029, Australia.

出版信息

J Immunol Methods. 2016 Mar;430:43-50. doi: 10.1016/j.jim.2016.01.014. Epub 2016 Jan 28.

Abstract

Isolation of peptide-specific T-cell clones is highly desirable for determining the role of T-cells in human disease, as well as for the development of therapies and diagnostics. However, generation of monoclonal T-cells with the required specificity is challenging and time-consuming. Here we describe a library-based strategy for the simple parallel detection and isolation of multiple peptide-specific human T-cell clones from CD8(+) or CD4(+) polyclonal T-cell populations. T-cells were first amplified by CD3/CD28 microbeads in a 96U-well library format, prior to screening for desired peptide recognition. T-cells from peptide-reactive wells were then subjected to cytokine-mediated enrichment followed by single-cell cloning, with the entire process from sample to validated clone taking as little as 6 weeks. Overall, T-cell libraries represent an efficient and relatively rapid tool for the generation of peptide-specific T-cell clones, with applications shown here in infectious disease (Epstein-Barr virus, influenza A, and Ebola virus), autoimmunity (type 1 diabetes) and cancer.

摘要

分离肽特异性T细胞克隆对于确定T细胞在人类疾病中的作用以及开发治疗方法和诊断手段非常必要。然而,生成具有所需特异性的单克隆T细胞具有挑战性且耗时。在这里,我们描述了一种基于文库的策略,用于从CD8(+)或CD4(+)多克隆T细胞群体中简单并行检测和分离多个肽特异性人类T细胞克隆。在筛选所需的肽识别之前,首先通过CD3/CD28微珠以96孔文库形式扩增T细胞。然后,对来自肽反应性孔的T细胞进行细胞因子介导的富集,随后进行单细胞克隆,从样品到经过验证的克隆的整个过程最短只需6周。总体而言,T细胞文库是生成肽特异性T细胞克隆的一种有效且相对快速的工具,本文展示了其在传染病(爱泼斯坦-巴尔病毒、甲型流感病毒和埃博拉病毒)、自身免疫性疾病(1型糖尿病)和癌症中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/437b/4783706/01212eac7efb/gr1.jpg

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