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通过将结合多聚体蛋白自组装到功能化材料表面,实现单个 T 细胞激活的固态捕获和实时分析。

Solid-state capture and real-time analysis of individual T cell activation via self-assembly of binding multimeric proteins on functionalized materials surfaces.

机构信息

Hanson Institute, Adelaide, SA 5000, Australia.

出版信息

Acta Biomater. 2012 Jan;8(1):99-107. doi: 10.1016/j.actbio.2011.09.001. Epub 2011 Sep 6.

Abstract

Polyfunctional T cell responses are increasingly underpinning new and improved vaccination regimens. Studies of the nature and extent of these T cell responses may be facilitated if specific T cell populations can be assessed from mixed populations by ligand-mediated capture in a solid-state assay format. Accordingly, we report here the development of a novel strategy for the solid-state capture and real-time activation analyses of individual cognate T cells which utilizes a spontaneous self-assembly process for generating multimers of biotinylated class I major histocompatibility-peptide complex (MHCp) directly on the solid-state assay surface while also ensuring stability by covalent interfacial binding. The capture surface was constructed by the fabrication of multilayer coatings onto standard slides. The first layer was a thin polymer coating with surface aldehyde groups, onto which streptavidin was covalently immobilized, followed by the docking of multimers of biotinylated MHCp or biotinylated anti-CD45.1 monoclonal antibody. The high binding strength at each step of this immobilization sequence aims to ensure that artefacts such as (partial) detachment, or displacement by proteins from solution, would not interfere with the intended biological assays. The multilayer coating steps were monitored by X-ray photoelectron spectroscopy; data indicated that the MHCp proteins self-assembled in a multimeric form onto the streptavidin surface. Immobilized multimeric MHCp demonstrated the capacity to bind and retain antigen-specific T cells from mixed populations of cells onto the solid carrier. Furthermore, real-time confocal microscopic detection and quantification of subsequent calcium flux using paired fluorescent ratiometric probes facilitated the analysis of individual T cell response profiles, as well as population analyses using a combination of individual T cell events.

摘要

多功能 T 细胞反应越来越成为新的和改进的疫苗接种方案的基础。如果可以通过配体介导的捕获在固态测定格式中从混合群体中评估特定的 T 细胞群体,那么这些 T 细胞反应的性质和程度的研究可能会得到促进。因此,我们在这里报告了一种用于个体同源 T 细胞的固态捕获和实时激活分析的新策略的发展,该策略利用自发的自组装过程直接在固态测定表面上生成生物素化 I 类主要组织相容性肽复合物(MHCp)的多聚体,同时通过共价界面结合来确保稳定性。捕获表面是通过在标准载玻片上制造多层涂层来构建的。第一层是具有表面醛基的薄聚合物涂层,将链霉亲和素共价固定在其上,然后将生物素化的 MHCp 或生物素化的抗 CD45.1 单克隆抗体多聚体对接。这种固定化序列中每个步骤的高结合强度旨在确保不会干扰预期的生物测定,例如(部分)脱离或被溶液中的蛋白质取代。多层涂层步骤通过 X 射线光电子能谱监测;数据表明,MHCp 蛋白以多聚体形式自组装到链霉亲和素表面上。固定化的多聚体 MHCp 证明能够从细胞的混合群体中结合并保留抗原特异性 T 细胞到固体载体上。此外,使用配对荧光比率探针实时共聚焦显微镜检测和定量随后的钙流,有助于分析单个 T 细胞反应谱,以及使用单个 T 细胞事件的组合进行群体分析。

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