CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Exploiting docetaxel-induced tumor cell necrosis with tumor targeted delivery of IL-12.
Exploiting docetaxel-induced tumor cell necrosis with tumor targeted delivery of IL-12.
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有强有力的证据表明,化疗可诱导肿瘤坏死,从而可用于将免疫肿瘤学药物靶向递送至肿瘤微环境(TME)。我们假设,多西他赛(一种诱导坏死的化疗药物)与双功能分子 NHS-IL-12(M9241)联合使用——后者通过特异性靶向肿瘤坏死区域递送重组 IL-12——将在炎症较少的鼠肿瘤模型 EMT6(乳腺癌)和免疫浸润中等的肿瘤模型 MC38(结直肠癌)中提供显著的抗肿瘤获益。多西他赛作为单药治疗或与 NHS-IL-12 联合使用,可促进肿瘤坏死,导致 NHS-IL-12 在 TME 中的蓄积和滞留改善。在 MC38 和 EMT6 鼠模型中,接受多西他赛和 NHS-IL-12 联合治疗的组别均观察到显著的抗肿瘤活性和生存期延长。治疗效果与TIL(肿瘤浸润淋巴细胞)增加相关,并依赖于 CD8+ T 细胞。接受联合治疗小鼠的 TME 转录组学显示,涉及固有免疫和适应性免疫因子之间交互作用的基因上调,以及髓系细胞特征下调。
此外,多西他赛和 NHS-IL-12 联合治疗在体内有效控制了 PD-L1 野生型和 PD-L1 敲除 MC38 的肿瘤生长,提示该联合方案可应用于免疫检查点难治性肿瘤和/或无论 PD-L1 状态的肿瘤。本文提供的数据为设计采用该联合方案或类似药物联合方案的临床研究提供了依据。
There is strong evidence that chemotherapy can induce tumor necrosis which can be exploited for the targeted delivery of immuno-oncology agents into the tumor microenvironment (TME).
We hypothesized that docetaxel, a chemotherapeutic agent that induces necrosis, in combination with the bifunctional molecule NHS-IL-12 (M9241), which delivers recombinant IL-12 through specific targeting of necrotic regions in the tumor, would provide a significant antitumor benefit in the poorly inflamed murine tumor model, EMT6 (breast), and in the moderately immune-infiltrated tumor model, MC38 (colorectal). Docetaxel, as monotherapy or in combination with NHS-IL-12, promoted tumor necrosis, leading to the improved accumulation and retention of NHS-IL-12 in the TME.
Significant antitumor activity and prolonged survival were observed in cohorts receiving docetaxel and NHS-IL-12 combination therapy in both the MC38 and EMT6 murine models. The therapeutic effects were associated with increased tumor infiltrating lymphocytes and were dependent on CD8 + T cells. Transcriptomics of the TME of mice receiving the combination therapy revealed the upregulation of genes involving crosstalk between innate and adaptive immunity factors, as well as the downregulation of signatures of myeloid cells.
In addition, docetaxel and NHS-IL-12 combination therapy effectively controlled tumor growth of PD-L1 wild-type and PD-L1 knockout MC38 in vivo, implying this combination could be applied in immune checkpoint refractory tumors, and/or tumors regardless of PD-L1 status. The data presented herein provide the rationale for the design of clinical studies employing this combination or similar combinations of agents.
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