重编程工程化自体 T 细胞以克服 Merkel 细胞癌患者的耐药性
Reprogramming engineered autologous T cells to overcome resistance in patients with Merkel cell carcinoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Enhancing antitumor response by efficiently generating large-scale TCR-T cells targeting a single epitope across multiple cancer antigens.
Enhancing antitumor response by efficiently generating large-scale TCR-T cells targeting a single epitope across multiple cancer antigens.
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亟需开发干预措施,遏制癌症发病率和死亡率上升,改善患者预后。过继细胞疗法面临高质量规模化生产的挑战,导致生产成本增加。多种癌症与高度免疫原性的 CTAG1 和 CTAG2 抗原表达相关,这些抗原具有共同表位。靶向同一癌症中的两种抗原可增强 TCR-T 细胞抗肿瘤应答。
本研究探索了一种高效方法,以大规模扩增高质量 TCR-T 细胞,并证明 CTAG1 和 CTAG2 抗原的共同表位可通过双抗原表位靶向提高癌细胞杀伤效果。
研究发现,无异种成分/无血清培养基可使 TCR-T 细胞扩增超过 500 倍,是含胎牛血清培养基的更好替代选择。缺乏无异种成分/无血清培养基时,人 AB 血清也是良好替代品。
此外,使用包被 T 细胞活化剂的微珠刺激的 TCR-T 细胞,其效应功能优于使用可溶性 T 细胞活化剂刺激的细胞。靶向同一癌症多种抗原的 TCR-T 细胞抗癌活性优于单靶点细胞。研究显示,使用共同表位多靶点抗原可增强 T 细胞疗法的抗肿瘤应答效果。
The need to contrive interventions to curb the rise in cancer incidence and mortality is critical for improving patients' prognoses. Adoptive cell therapy is challenged with quality large-scale production, heightening its production cost. Several cancer types have been associated with the expression of highly-immunogenic CTAG1 and CTAG2 antigens, which share common epitopes.
Targeting two antigens on the same cancer could improve the antitumor response of TCR-T cells. In this study, we exploited an efficient way to generate large-fold quality TCR-T cells and also demonstrated that the common epitopes of CTAG1 and CTAG2 antigens provide an avenue for improved cancer-killing via dual-antigen-epitope targeting.
Our study revealed that xeno/sera-free medium could expand TCR-T cells to over 500-fold, posing as a better replacement for FBS-supplemented media. Human AB serum was also shown to be a good alternative in the absence of xeno/sera-free media.
Furthermore, TCR-T cells stimulated with beads-coated T-activator showed a better effector function than soluble T-activator stimulated TCR-T cells.
Additionally, TCR-T cells that target multiple antigens in the same cancer yield better anticancer activity than those targeting a single antigen. This showed that targeting multiple antigens with a common epitope may enhance the antitumor response efficacy of T cell therapies.
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