γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:γδ T Cells Support Antigen-Specific αβ T cell-Mediated Antitumor Responses during BCG Treatment for Bladder Cancer.
卡介苗(BCG)是降低高危非肌层浸润性膀胱癌患者复发的最有效膀胱内灌注药物。
卡介苗(BCG)是降低高危非肌层浸润性膀胱癌患者复发的最有效膀胱内灌注药物。然而,对BCG的应答存在差异,且提高BCG疗效的策略尚未实现。既往研究表明,介导BCG治疗效果需要常规αβ T细胞或非常规γδ T细胞,但T细胞抗原特异性对BCG治疗效果的重要性尚不清楚。在此,我们提供直接证据表明,BCG增加了膀胱癌患者中肿瘤抗原特异性αβ T细胞的数量,并保护小鼠免受随后的同种肿瘤攻击,支持BCG诱导肿瘤特异性记忆和保护。将抗原特异性αβ T细胞过继转移至接种同基因MB49膀胱肿瘤的免疫缺陷小鼠中显示,肿瘤抗原特异性和BCG抗原特异性αβ T细胞均有助于BCG疗效。然而,BCG特异性抗肿瘤免疫也需要非常规γδ T细胞。既往研究表明,mTOR抑制剂雷帕霉素诱导γδ T细胞的增殖和效应功能。在此,雷帕霉素以γδ T细胞依赖的方式提高了BCG对小鼠和人膀胱癌的体内疗效。因此,γδ T细胞增强了BCG的抗肿瘤适应性免疫效应,并支持雷帕霉素作为提高BCG治疗非肌层浸润性膀胱癌疗效的有前景的方法。
Bacillus Calmette-Guérin (BCG) is the most effective intravesical agent at reducing recurrence for patients with high-grade, non-muscle-invasive bladder cancer. Nevertheless, response to BCG is variable and strategies to boost BCG efficacy have not materialized. Prior work demonstrated a requirement for either conventional αβ or nonconventional γδ T cells in mediating BCG treatment efficacy, yet the importance of T-cell antigen specificity for BCG's treatment effect is unclear. Here, we provide direct evidence to show that BCG increases the number of tumor antigen-specific αβ T cells in patients with bladder cancer and protects mice from subsequent same-tumor challenge, supporting BCG induction of tumor-specific memory and protection. Adoptive T-cell transfers of antigen-specific αβ T cells into immunodeficient mice challenged with syngeneic MB49 bladder tumors showed that both tumor and BCG antigen-specific αβ T cells contributed to BCG efficacy. BCG-specific antitumor immunity, however, also required nonconventional γδ T cells. Prior work shows that the mTOR inhibitor rapamycin induces the proliferation and effector function of γδ T cells. Here, rapamycin increased BCG efficacy against both mouse and human bladder cancer in vivo in a γδ T cell-dependent manner. Thus, γδ T cells augment antitumor adaptive immune effects of BCG and support rapamycin as a promising approach to boost BCG efficacy in the treatment of non-muscle-invasive bladder cancer.
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