TCR-JANUS 衔接蛋白实现双特异性靶向以克服 TCR-T 细胞治疗中的肿瘤异质性
TCR-JANUS engager proteins enable bispecific targeting to overcome tumor heterogeneity in TCR-T cell therapy.
基于 T 细胞受体(TCR)的免疫疗法受限于肿瘤抗原异质性,后者常导致复发。
英文原题:NY-ESO-1-specific T cell receptor-engineered T cells and Tranilast, a TRPV2 antagonist bivalent treatment enhances the killing of esophageal cancer: a dual-targeted cancer therapeutic route.
NY-ESO-1-specific T cell receptor-engineered T cells and Tranilast, a TRPV2 antagonist bivalent treatment enhances the killing of esophageal cancer: a dual-targeted cancer therapeutic route.
我们的研究结果表明,双靶向免疫疗法可能具有更优越的抗肿瘤效果。我们的研究提出了一种技术,用于为EC和其他恶性肿瘤开发新颖、稳健、及时的治疗策略和干预措施。
食管癌(EC)是一种全球性的顽疾,因其持续高发的发病率以及难以攻克的复发和转移而导致高死亡率,因而臭名昭著。然而,EC的这些复杂性与其NY-ESO-1抗原的过度表达相关,为过继性T细胞治疗提供了一线生机。我们假设,天然分离的与NY-ESO-1结合的高亲和力T细胞受体(TCR)能够使T淋巴细胞以显著增强的抗肿瘤反应效力靶向EC。此外,靶向与EC肿瘤发生相关的TRPV2,为双靶向治疗开辟了途径。我们探索了针对EC的双靶向抗肿瘤疗效。
我们从富集的细胞毒性T淋巴细胞中获取的TCR构建的初始文库中分离出抗原特异性TCR(asTCR)。我们使用前瞻性交叉反应性人肽变体和肿瘤细胞评估了asTCR及其TCR-T细胞衍生物、Tranilast(TRPV2抑制剂)及其二价治疗的稳健性。
我们的研究表明,我们未经增强的初始 asTCR 及其 TCR-T 保持了其对 HLA-A*02:01/NY-ESO-1 (157-165) 的特异性,与已知的亲和力增强 TCR (TCRe) 及其靶向相同 NY-ESO-1 抗原的野生型 (TCR0) 相比,以更高的细胞毒性杀伤不同的 EC 细胞。此外,TCR-T 与 Tranilast 二价联合治疗显示出优于 TCR-T 或 Tranilast 任一单价治疗的 EC 杀伤效果。
BACKGROUND: Esophageal cancer (EC) is a global canker notorious for causing high mortality due to its relentless incidence rate, convoluted with unyielding recurrence and metastasis. However, these intricacies of EC are associated with an immoderate expression of NY-ESO-1 antigen, presenting a lifeline for adoptive T cell therapy. We hypothesized that naturally isolated higher-affinity T cell receptors (TCRs) that bind to NY-ESO-1 would allow T lymphocytes to target EC with a pronounced antitumor response efficacy. Also, targeting TRPV2, which is associated with tumorigenesis in EC, creates an avenue for dual-targeted therapy. We exploited the dual-targeting antitumor efficacy against EC. METHODS: We isolated antigen-specific TCRs (asTCRs) from a naive library constructed with TCRs obtained from enriched cytotoxic T lymphocytes. The robustness of our asTCRs and their TCR-T cell derivatives, Tranilast (TRPV2 inhibitor), and their bivalent treatment were evaluated with prospective cross-reactive human-peptide variants and tumor cells. RESULTS: Our study demonstrated that our naive unenhanced asTCRs and their TCR-Ts perpetuated their cognate HLA-A*02:01/NY-ESO-1 (157-165) specificity, killing varying EC cells with higher cytotoxicity compared to the known affinity-enhanced TCR (TCRe) and its wild-type (TCR0) which targets the same NY-ESO-1 antigen. Furthermore, the TCR-Ts and Tranilast bivalent treatment showed superior EC killing compared to any of their monovalent treatments of either TCR-T or Tranilast. CONCLUSION: Our findings suggest that dual-targeted immunotherapy may have a superior antitumor effect. Our study presents a technique to evolve novel, robust, timely therapeutic strategies and interventions for EC and other malignancies.
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