Department of Bioengineering, University of California, Los Angeles, CA 90095.
Department of Molecular and Medical Pharmacology, David Geffen School of Medicine, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2024 Apr 2;121(14):e2320442121. doi: 10.1073/pnas.2320442121. Epub 2024 Mar 27.
The ability to selectively bind to antigenic peptides and secrete effector molecules can define rare and low-affinity populations of cells with therapeutic potential in emerging T cell receptor (TCR) immunotherapies. We leverage cavity-containing hydrogel microparticles, called nanovials, each coated with peptide-major histocompatibility complex (pMHC) monomers to isolate antigen-reactive T cells. T cells are captured and activated by pMHCs inducing the secretion of effector molecules including IFN-γ and granzyme B that are accumulated on nanovials, allowing sorting based on both binding and function. The TCRs of sorted cells on nanovials are sequenced, recovering paired αβ-chains using microfluidic emulsion-based single-cell sequencing. By labeling nanovials having different pMHCs with unique oligonucleotide-barcodes and secretions with oligo-barcoded detection antibodies, we could accurately link TCR sequences to specific targets and rank each TCR based on the corresponding cell's secretion level. Using the technique, we identified an expanded repertoire of functional TCRs targeting viral antigens with high specificity and found rare TCRs with activity against cancer-specific splicing-enhanced epitopes.
能够选择性地结合抗原肽并分泌效应分子,可以定义在新兴的 T 细胞受体 (TCR) 免疫疗法中具有治疗潜力的稀有、低亲和力的细胞群体。我们利用含有空腔的水凝胶微球,即纳米小室,每个小室都涂有肽-主要组织相容性复合物 (pMHC) 单体,用于分离抗原反应性 T 细胞。pMHC 诱导 T 细胞被捕获和激活,导致效应分子(包括 IFN-γ 和 granzyme B)的分泌,这些分子在纳米小室上积累,允许根据结合和功能进行分选。对纳米小室上的分选细胞进行 TCR 测序,使用基于微流控乳液的单细胞测序回收配对的 αβ 链。通过用独特的寡核苷酸条形码标记具有不同 pMHC 的纳米小室,并使用寡核苷酸条形码检测抗体标记分泌物,我们可以准确地将 TCR 序列与特定的靶标联系起来,并根据相应细胞的分泌水平对每个 TCR 进行排序。使用该技术,我们鉴定了针对病毒抗原的具有高特异性的功能扩展 TCR repertoire,并发现了针对癌症特异性剪接增强表位的具有活性的稀有 TCR。