CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Maximizing cancer therapy via complementary mechanisms of immune activation: PD-1 blockade, neoantigen vaccination, and Tregs depletion.
Maximizing cancer therapy via complementary mechanisms of immune activation: PD-1 blockade, neoantigen vaccination, and Tregs depletion.
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多种不同的免疫途径参与有效杀伤癌细胞,统称为“癌症免疫循环”。抗PD-1检查点阻断(CPB)疗法作用于其中一条途径,并重新激活抗癌T细胞免疫,从而在有限部分癌症患者中产生长期应答。我们此前已表明,基于新抗原的腺病毒载体疫苗与抗PD-1联合可进一步扩展现有的抗癌免疫,并诱导新的新抗原特异性T细胞,从而将小鼠中的疗效提高至50%的肿瘤清除率。在此,我们在CPB加疫苗联合方案中加入了第三个组分,该组分能够通过减少肿瘤浸润性调节性T细胞(Tregs)的数量来改变抑制性肿瘤微环境,作为提高治疗疗效和克服耐药的策略。
在鼠肿瘤模型中研究了抗PD-1、新抗原疫苗和Treg调节剂(Bempegaldesleukin(BEMPEG: NKTR-214)或具有Treg耗竭活性的抗CTLA-4 mAb)的抗肿瘤疗效。我们评估了治疗动物的肿瘤生长、肿瘤中新抗原特异性T细胞、TIL(肿瘤浸润淋巴细胞)(TILs)和瘤内Tregs。
在疫苗和抗PD-1联合治疗的基础上加入BEMPEG或抗CTLA-4,导致近100%接受治疗的动物大肿瘤完全根除,这与癌症新抗原特异性T细胞的扩增和活化以及肿瘤浸润性Tregs的减少相关。
这些数据支持这样一个观点:对癌症免疫循环三个步骤的整合调控,包括新抗原特异性T细胞的扩增、耗竭T细胞表型的逆转以及瘤内Treg的减少,可能代表一种新的合理设计的药物联合方案,以实现更高的治愈率。
A number of different immune pathways are involved in the effective killing of cancer cells, collectively named as the 'Cancer Immunity Cycle'. Anti-PD-1 checkpoint blockade (CPB) therapy is active on one of these pathways and reinvigorates anticancer T cell immunity, leading to long-term responses in a limited fraction of patients with cancer. We have previously shown that neoantigens-based adenovirus vectored vaccine in combination with anti-PD-1 further expands pre-existing anticancer immunity and elicits novel neoantigen-specific T cells thereby increasing efficacy to 50% of tumor clearance in mice. Here we added a third component to the CPB plus vaccine combination, which is able to modify the suppressive tumor microenvironment by reducing the number of tumor-infiltrating regulatory T cells (Tregs), as strategy for improving the therapeutic efficacy and overcoming resistance.
The antitumor efficacy of anti-PD-1, neoantigen vaccine and Treg modulating agents, either Bempegaldesleukin (BEMPEG: NKTR-214) or an anti-CTLA-4 mAb with Treg-depleting activity, was investigated in murine tumor models. We evaluated tumor growth in treated animals, neoantigen-specific T cells in tumors, tumor-infiltrating lymphocytes (TILs) and intratumoral Tregs.
The addition of BEMPEG or anti-CTLA-4 to the combination of vaccine and anti-PD-1 led to complete eradication of large tumors in nearby 100% of treated animals, in association with expansion and activation of cancer neoantigen-specific T cells and reduction of tumor-infiltrating Tregs.
These data support the notion that the integrated regulation of three steps of the cancer immunity cycle, including expansion of neoantigen-specific T cells, reversal of the exhausted T cell phenotype together with the reduction of intratumoral Tregs may represent a novel rationally designed drug combination approach to achieve higher cure rates.
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