Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL, USA.
Department of Chemistry, University of Chicago, Chicago, IL, USA.
Nat Methods. 2024 May;21(5):857-867. doi: 10.1038/s41592-023-02165-7. Epub 2024 Feb 19.
Studies using antigen-presenting systems at the single-cell and ensemble levels can provide complementary insights into T-cell signaling and activation. Although crucial for advancing basic immunology and immunotherapy, there is a notable absence of synthetic material toolkits that examine T cells at both levels, and especially those capable of single-molecule-level manipulation. Here we devise a biomimetic antigen-presenting system (bAPS) for single-cell stimulation and ensemble modulation of T-cell recognition. Our bAPS uses hexapod heterostructures composed of a submicrometer cubic hematite core (α-FeO) and nanostructured silica branches with diverse surface modifications. At single-molecule resolution, we show T-cell activation by a single agonist peptide-loaded major histocompatibility complex; distinct T-cell receptor (TCR) responses to structurally similar peptides that differ by only one amino acid; and the superior antigen recognition sensitivity of TCRs compared with that of chimeric antigen receptors (CARs). We also demonstrate how the magnetic field-induced rotation of hexapods amplifies the immune responses in suspended T and CAR-T cells. In addition, we establish our bAPS as a precise and scalable method for identifying stimulatory antigen-specific TCRs at the single-cell level. Thus, our multimodal bAPS represents a unique biointerface tool for investigating T-cell recognition, signaling and function.
在单细胞和整体水平上使用抗原呈递系统的研究可以为 T 细胞信号转导和激活提供互补的见解。尽管对于推进基础免疫学和免疫疗法至关重要,但缺乏既能在这两个层面上研究 T 细胞,又能进行单分子级操控的合成材料工具包。在这里,我们设计了一种用于单细胞刺激和 T 细胞识别整体调节的仿生抗原呈递系统(bAPS)。我们的 bAPS 使用由亚微米立方赤铁矿核心(α-FeO)和具有不同表面修饰的纳米结构二氧化硅分支组成的六足异构结构。在单分子分辨率下,我们展示了负载有单个激动肽的主要组织相容性复合物对 T 细胞的激活;结构相似的肽之间只有一个氨基酸的差异,TCR 会产生不同的反应;与嵌合抗原受体(CAR)相比,TCR 具有更高的抗原识别灵敏度。我们还证明了磁场诱导的六足旋转如何增强悬浮 T 细胞和 CAR-T 细胞的免疫反应。此外,我们将 bAPS 确立为一种在单细胞水平上识别刺激抗原特异性 TCR 的精确和可扩展的方法。因此,我们的多模态 bAPS 代表了一种用于研究 T 细胞识别、信号转导和功能的独特生物界面工具。