研究概要
我们的数据表明,NK细胞通过协调肿瘤中的“应答者”分子谱,并通过调控T细胞运输的多个关键分子介质来控制CD8+ T细胞的瘤内丰度,从而支撑PC阻断在BrM中的疗效。
中文摘要
背景 脑转移(BrM)影响高达60%的转移性黑色素瘤患者,并与不良预后相关。虽然程序性死亡-1(PD-1)和细胞毒性T淋巴细胞相关蛋白4(CTLA-4)的联合免疫检查点阻断在一部分黑色素瘤患者中显示出颅内疗效,但缓解很少持久,特别是在有症状的BrM患者中。大脑是一个免疫特化器官,免疫反应的调节方式与外周不同。方法 使用我们先前建立的黑色素瘤BrM双部位模型,该模型同时具有颅内和颅外肿瘤,并且能够重现临床上观察到的联合PD-1/CTLA-4(PC)阻断的疗效,我们在此通过功能研究、免疫表型分析和分子谱分析探讨了自然杀伤(NK)细胞在BrM中的作用。结果 我们证明NK细胞是PC阻断颅内疗效所必需的。虽然穿孔素和干扰素γ都是PC阻断依赖性控制颅内肿瘤生长所必需的,但从颅内肿瘤中分离的NK细胞仅表现出有限的癌细胞杀伤能力,并且PC阻断并未改变肿瘤内NK细胞的丰度。然而,在PC阻断治疗的小鼠中耗竭NK细胞导致肿瘤分子谱类似于那些对治疗无反应的颅内肿瘤中观察到的分子谱。此外,NK细胞的耗竭导致颅内肿瘤内CD8+ T细胞丰度显著降低,而包括CD4+ T细胞、巨噬细胞和小胶质细胞在内的其他免疫细胞群体的丰度保持不变。过继性T细胞转移实验表明,PC阻断诱导的CD8+ T细胞向颅内肿瘤的迁移是趋化因子依赖性的。与此一致,PC阻断增强了肿瘤内多种T细胞招募趋化因子的表达,我们在小鼠BrM浸润性CD8+ T细胞以及人BrM中观察到同源趋化因子受体的高表达水平。重要的是,NK细胞耗竭显著降低了PC阻断后上调的T细胞招募趋化因子和血管T细胞进入受体的肿瘤内表达水平。结论 我们的数据表明,NK细胞通过协调肿瘤中的“应答者”分子谱,并通过调控T细胞迁移的多个关键分子介质来控制CD8+ T细胞的肿瘤内丰度,从而支撑PC阻断在BrM中的疗效。
展开英文摘要原文
Background Brain metastases (BrM) affect up to 60% of patients with metastatic melanoma and are associated with poor prognosis. While combined immune checkpoint blockade of programmed death-1 (PD-1) and cytotoxic T-lymphocyte-associated protein 4 (CTLA-4) demonstrates intracranial efficacy in a proportion of patients with melanoma, the responses are rarely durable, particularly in patients with symptomatic BrM. The brain is an immune-specialized organ and immune responses are regulated differently to the periphery. Methods Using our previously established two-site model of melanoma BrM with concomitant intracranial and extracranial tumors, in which clinically observed efficacy of the combined PD-1/CTLA-4 (PC) blockade can be reproduced, we here explored the role of natural killer (NK) cells in BrM, using functional studies, immunophenotyping and molecular profiling. Results We demonstrate that NK cells are required for the intracranial efficacy of PC blockade. While both perforin and interferon gamma were necessary for the PC blockade-dependent control of intracranial tumor growth, NK cells isolated from intracranial tumors demonstrated only a limited cancer cell killing ability, and PC blockade did not alter the abundance of NK cells within tumors. However, the depletion of NK cells in PC blockade-treated mice led to tumor molecular profiles reminiscent of those observed in intracranial tumors that failed to respond to therapy. Furthermore, the depletion of NK cells resulted in a strikingly reduced abundance of CD8+ T cells within intracranial tumors, while the abundance of other immune cell populations including CD4+ T cells, macrophages and microglia remained unaltered. Adoptive T cell transfer experiments demonstrated that PC blockade-induced trafficking of CD8+ T cells to intracranial tumors was chemokine-dependent. In line with this, PC blockade enhanced intratumoral expression of several T cell-attracting chemokines and we observed high expression levels of cognate chemokine receptors on BrM-infiltrating CD8+ T cells in mice, as well as in human BrM. Importantly, the depletion of NK cells strikingly reduced the intratumoral expression levels of T cell attracting chemokines and vascular T cell entry receptors that were upregulated following PC blockade. Conclusion Our data demonstrate that NK cells underpin the efficacy of PC blockade in BrM by orchestrating the "responder" molecular profile in tumors, and by controlling the intratumoral abundance of CD8+ T cells through regulation of multiple key molecular mediators of T cell trafficking.
论文信息
- 作者
- Fife C、Williams J、James F、Gregory S、Andreou T、Sunderland A、McKimmie C、Brownlie RJ
- 第一作者单位
- Leeds Institute of Medical Research at St James's, University of Leeds, Leeds, UK.United Kingdom
- 通讯作者单位
- Leeds Institute of Medical Research at St James's, University of Leeds, Leeds, UK M.Lorger@leeds.ac.uk.United Kingdom
- 期刊
- Journal for immunotherapy of cancer2024 Nov 17