一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dynamics of Circulating Immune Cells During Chemoradiotherapy in Patients with Non-Small Cell Lung Cancer Support Earlier Administration of Anti-PD-1/PD-L1 Therapy.
Dynamics of Circulating Immune Cells During Chemoradiotherapy in Patients with Non-Small Cell Lung Cancer Support Earlier Administration of Anti-PD-1/PD-L1 Therapy.
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研究结果表明,与 CRT 完成后延迟给药相比,早期给予 PD-1 阻断治疗可能与更优的疗效相关。这些发现为临床试验中免疫检查点抑制剂与 CRT 联合治疗的最佳时机提供了免疫学依据。
放化疗(CRT)后序贯巩固免疫检查点抑制剂可显著改善不可切除局部晚期非小细胞肺癌的生存。然而,CRT与免疫检查点抑制剂的最佳顺序尚未确定。我们研究了CRT期间外周血免疫细胞的动态变化,以确定最佳治疗顺序。
外周血样本在治疗前、CRT期间每周1次持续6周以及治疗后1个月前瞻性采集自24例接受根治性CRT的局部晚期非小细胞肺癌患者。通过流式细胞术进行免疫细胞分析。通过IFN-γ细胞内细胞因子染色进行离体PD-1阻断试验。
淋巴细胞减少在CRT期间显著观察到,并在CRT后1个月大多恢复。CD8+ T细胞的强劲增殖被诱导,在CRT期间的最后一周达到峰值,并在CRT后下降。CD8+ T细胞的强劲增殖导致CRT后CD28- CD57+复制性衰老和终末分化细胞的频率增加。肿瘤反应性CD8+ T细胞在CRT期间增加,并在最后一周达到峰值。CRT后一个月,肿瘤反应性CD8+ T细胞的频率下降,TOX hi TCF1 lo终末耗竭CD8+ T细胞显著增加。抗PD-1诱导的PD-1+ CD8+ T细胞功能恢复在CRT最后一周最大化,并在CRT后显著下降。
Chemoradiotherapy (CRT) followed by consolidation immune checkpoint inhibitors significantly improves survival in unresectable locally advanced non-small cell lung cancer. However, the optimal sequence for CRT and immune checkpoint inhibitors has not yet been established. We investigated the dynamics of peripheral blood immune cells during CRT to determine the best sequence for treatment. METHODS AND MATERIALS: Peripheral blood samples were prospectively collected pretreatment, weekly during CRT for 6 weeks, and 1 month posttreatment in 24 patients with locally advanced non-small cell lung cancer who received definitive CRT. Immune cell analysis was performed by flow cytometry. Ex vivo PD-1 blockade assays were performed by IFN-γ intracellular cytokine staining.
Lymphopenia was prominently observed during CRT and mostly recovered 1 month post-CRT. Robust proliferation of CD8 + T cells was induced, peaking in the last week during CRT and decreasing post-CRT. The robust proliferation of CD8 + T cells led to an increase in the frequency of CD28 - CD57 + replicative senescent and terminally differentiated cells post-CRT. Tumor-reactive CD8 + T cells increased during CRT and peaked in the last week. One month post-CRT, the frequency of tumor-reactive CD8 + T cells decreased and TOX hi TCF1 lo terminally exhausted CD8 + T cells significantly increased. Anti-PD-1-induced functional restoration of PD-1 + CD8 + T cells was maximized in the last week of CRT and significantly decreased post-CRT.
The findings suggest that earlier administration of PD-1 blockade may be associated with superior efficacy compared with delayed administration after completion of CRT. These findings provide an immunologic rationale for optimal timing of combining immune checkpoint inhibitors with CRT in clinical trials.
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