CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Combined vaccine-immune-checkpoint inhibition constitutes a promising strategy for treatment of dMMR tumors.
Combined vaccine-immune-checkpoint inhibition constitutes a promising strategy for treatment of dMMR tumors.
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通过成功解偶联 PD-1/PD-L1 轴,我们为安全且成功地应用免疫疗法对抗 dMMR 驱动的恶性肿瘤提供了进一步的证据,这值得进一步研究。
Mlh1敲除驱动的错配修复缺陷(dMMR)肿瘤可以被免疫靶向。通过应用治疗性肿瘤疫苗,肿瘤生长被延迟,但逃逸机制出现,包括免疫检查点分子(LAG-3、PD-L1)的上调。为了对抗免疫逃逸,我们研究了联合肿瘤疫苗-免疫检查点抑制剂治疗使用α-PD-L1的治疗活性。
在本试验中,患有已形成胃肠道肿瘤的Mlh1敲除小鼠接受单次或三次注射α-PD-L1单克隆抗体克隆6E11(2.5 mg/kg体重,每2周一次,静脉注射),单独使用或与疫苗联合使用。随后进行纵向流式细胞术和PET/CT成像研究,以及离体功能免疫学和基因表达测定。
6E11单药治疗略微提高了中位总生存期(mOS:6.0周 vs. 对照组4.0周)。增加注射次数(n = 3)改善了治疗结果(mOS:9.2周),并且通过将6E11与疫苗联合使用得到了显著提升(mOS:19.4周 vs. 疫苗单药治疗10.2周)。伴随的PET/CT成像证实了治疗诱导的肿瘤生长控制,其中联合治疗组的抑制效果最强。三只小鼠(30%)实现了完全缓解并表现出长期生存。循环脾脏和瘤内髓源性抑制细胞(MDSC)水平降低以及表达免疫检查点的脾脏T细胞(LAG-3、CTLA-4)数量减少伴随治疗效应出现。残余肿瘤的基因表达和蛋白质分析显示PI3K/Akt/Wnt和TGF信号下调,导致T细胞浸润、巨噬细胞、中性粒细胞和MDSC数量减少。
Mlh1-knock-out-driven mismatch-repair-deficient (dMMR) tumors can be targeted immunologically. By applying therapeutic tumor vaccination, tumor growth is delayed but escape mechanisms evolve, including upregulation of immune-checkpoint molecules (LAG-3, PD-L1). To counteract immune escape, we investigated the therapeutic activity of a combined tumor vaccine-immune-checkpoint inhibitor therapy using α-PD-L1. DESIGN: In this trial, Mlh1-knock-out mice with established gastrointestinal tumors received single or thrice injections of α-PD-L1 monoclonal antibody clone 6E11 (2.5 mg/kg bw, q2w, i.v.) either alone or in combination with the vaccine. Longitudinal flow cytometry and PET/CT imaging studies were followed by ex vivo functional immunological and gene expression assays.
6E11 monotherapy slightly increased median overall survival (mOS: 6.0 weeks vs. control 4.0 weeks). Increasing the number of injections (n = 3) improved therapy outcome (mOS: 9.2 weeks) and was significantly boosted by combining 6E11 with the vaccine (mOS: 19.4 weeks vs. 10.2 weeks vaccine monotherapy). Accompanying PET/CT imaging confirmed treatment-induced tumor growth control, with the strongest inhibition in the combination group. Three mice (30%) achieved a complete remission and showed long-term survival. Decreased levels of circulating splenic and intratumoral myeloid-derived suppressor cells (MDSC) and decreased numbers of immune-checkpoint-expressing splenic T cells (LAG-3, CTLA-4) accompanied therapeutic effects. Gene expression and protein analysis of residual tumors revealed downregulation of PI3K/Akt/Wnt-and TGF-signaling, leading to T cell infiltration, reduced numbers of macrophages, neutrophils and MDSC.
By successful uncoupling of the PD-1/PD-L1 axis, we provide further evidence for the safe and successful application of immunotherapies to combat dMMR-driven malignancies that warrants further investigation.
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