工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Natural high-avidity T-cell receptor efficiently mediates regression of cancer/testis antigen 83 positive common solid cancers.
Natural high-avidity T-cell receptor efficiently mediates regression of cancer/testis antigen 83 positive common solid cancers.
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针对 CT83 的高亲和力 TCR 可从 YHDs 中分离,并能有效介导已充分建立的异种移植常见实体瘤的消退。部分供者外周血中存在针对 CT83 及其他 CTA 的高亲和力 TCR 库,为高效分离靶向多种实体癌的高亲和力 TCR 提供了基础。
T细胞受体工程T细胞(TCR-Ts)在抗癌临床试验中取得了令人鼓舞的成功。然而,抗原靶点主要集中在少数癌/睾丸抗原(CTAs)的HLA A*02:01限制性表位上,这些抗原在常见实体瘤中并未广泛表达;所测试的T细胞受体(TCRs)通常来自老年患者的TIL(肿瘤浸润淋巴细胞),且不能确保具有更高的亲和力。在此,我们提出分离针对在常见实体瘤中频繁表达的CTAs的高亲和力TCRs。
我们选择在常见实体癌中频繁表达的 CT83 蛋白作为模型抗原,用于筛选其特异性 TCR。将预测的、与中国人群常见 HLA-I 分子具有强或弱结合的 CT83 表位整合到三条合成长肽中。用负载肽的树突状细胞(DCs)刺激 CT83 反应性 CD8+ T 细胞,并使用 CD137 生物标志物分选后进行单细胞测序,以获得配对的 TCRαβ 序列。对出现频率较高的 TCR 进行重建,用于表征 CT83 表位并评估体外和体内抗肿瘤活性。
来自年轻健康供者(YHDs)的 CT83 反应性 T 细胞通过用 DCs 和肽反复刺激产生。反应性 T 细胞的单细胞 TCR 测序结果表明,单一 TCR 克隆型在配对 TCRs 中占主导地位。用这一优势 TCR 工程化的 T 细胞导致对 CT83 14-22 表位的 HLA-A*11:01 限制性识别,且亲和力更高。功能实验显示,在体外对几种 CT83 阳性实体癌细胞系靶标具有强大的细胞毒性。此外,TCR-Ts 在三种异种移植实体瘤模型中显示出治疗疗效。对 92 种 CTA 基因表达的荟萃分析表明,大多数 CTA 在胸腺中不表达或低水平表达,这提示这些 CTA 可能经历不完全的胸腺中枢耐受。
T-cell receptor-engineered T cells (TCR-Ts) have achieved encouraging success in anticancer clinical trials. The antigenic targets, however, were primarily focused on human leukocyte antigen (HLA) A*02:01 restricted epitopes from a few cancer/testis antigens (CTAs) which are not widely expressed in common solid cancers; the tested T-cell receptors (TCRs) were frequently from tumor-infiltrating lymphocytes of old patients and were not assured to have higher avidity. Here, we propose the isolation of high-avidity TCRs against CTAs that are frequently expressed in common solid cancers.
We selected the CT83 protein, which is frequently expressed in common solid cancers, as a model antigen for screening of its specific TCR. The predicted CT83 epitopes with strong or weak binding to HLA-I molecules, popular in the Chinese population, were integrated into three synthetic long peptides. CT83 reactive CD8+ T cells were stimulated with peptide-loaded dendritic cells (DCs) and sorted using the CD137 biomarker for single-cell sequencing to obtain the paired TCRαβ sequence. The higher frequency TCRs were reconstructed for characterization of the CT83 epitope and for assessment of in vitro and in vivo antitumor activities.
CT83 reactive T cells from young healthy donors (YHDs) were generated by repeated stimulation with DCs and peptides. The single-cell TCR sequencing results of reactive T cells indicated that a single TCR clonotype dominated the paired TCRs. T cells engineered with this dominant TCR led to HLA-A*11:01-restricted recognition of the CT83 14-22 epitope, with higher avidity. Functional assays showed powerful cytotoxicity in vitro against the targets of several CT83-positive solid cancer cell lines. Furthermore, TCR-Ts showed therapeutic efficacy in three xenograft solid tumor models. The meta-analysis of gene expression of 92 CTAs indicated that most CTAs did not or at low levels in the thymus, which suggested that those CTAs may experience incomplete thymic central tolerance.
High-avidity TCR against CT83 could be isolated from YHDs and efficiently mediate regression of well-established xenograft common solid tumors. The high-avidity TCR repertoire in the peripheral blood of some donors for CT83 and other CTAs provides the basis for the efficient isolation of high-avidity TCRs to target numerous solid cancers.
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