Author:
Amissah Obed Boadi,Chen Wenfang,de Dieu Habimana Jean,Sun Yirong,Lin Lihui,Liu Yujie,Wang Ling,Liu Zhaoming,Mukama Omar,Basnet Rajesh,Liu Hohua,Li Junyi,Ding Xuanyan,Lv Lingshuang,Chen Min,Liang Yalin,Huang Rongqi,Li Zhiyuan
Abstract
Abstract
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.
Funder
Stem Cell New Drug Innovation grant
ANSO-CAS-TWAS/UNESCO PhD Scholarship2021
Natural Science Foundation of Guangdong Province
Hunan Provincial Key Research and Development Plan
Publisher
Springer Science and Business Media LLC
Cited by
4 articles.
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