Shi Yong Neo, Le Tong, Joni Chong, Yaxuan Liu, Xu Jing, Mariana M. S. Oliveira, Yi Chen, Ziqing Chen, Keene Lee, Nutsa Burduli, Xinsong Chen, Juan Gao, Ran Ma, Jia Pei Lim, Jianxin Huo, Shengli Xu, Evren Alici, Stina L. Wickström, Felix Haglund, Johan Hartman, Arnika K. Wagner, Yihai Cao, Rolf Kiessling, Kong Peng Lam, Lisa S. Westerberg, Andreas Lundqvist
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引用次数: 0
摘要
自然杀伤(NK)细胞除了具有杀伤特性外,还在塑造肿瘤微环境方面发挥着不可或缺的作用。通过免疫基因解卷积,本研究揭示了免疫检查点疗法无反应者中NK细胞与髓源性抑制细胞(MDSCs)之间的相互作用。鉴于NK细胞与类髓鞘细胞相互作用的机制在很大程度上仍然未知,我们试图研究NK细胞与抑制性类髓鞘细胞之间的交叉对话。与肿瘤经验丰富的 NK 细胞接触后,单核细胞和中性粒细胞显示出与 MDSC 相关的抑制因子表达增加,同时抑制 T 细胞的能力也增强了。伴随这些变化的是单核细胞抗原呈递功能受损和中性粒细胞ER应激反应增强。在一组肉瘤和乳腺癌患者中,肿瘤浸润NK细胞产生的白细胞介素-6(IL-6)与MDSCs表达的S100A8/9和精氨酸酶-1相关。同时,NK细胞衍生的IL-6与主要组织相容性复合体I类表达较高的肿瘤相关,我们通过b2m基因敲除(KO)肿瘤小鼠模型进一步验证了这一点。同样,在合成野生型和IL-6 KO小鼠模型中,我们也证明了MDSCs的积累受这种调节性NK细胞存在的影响。抑制IL-6/信号转导和激活转录3(STAT3)轴可减轻对T细胞反应的抑制,从而减少肿瘤生长和转移扩散。这些结果共同描述了在肿瘤免疫逃逸过程中驱动 MDSCs 发展的 NK 细胞介导的关键机制。
Tumor-associated NK cells drive MDSC-mediated tumor immune tolerance through the IL-6/STAT3 axis
Apart from their killer identity, natural killer (NK) cells have integral roles in shaping the tumor microenvironment. Through immune gene deconvolution, the present study revealed an interplay between NK cells and myeloid-derived suppressor cells (MDSCs) in nonresponders of immune checkpoint therapy. Given that the mechanisms governing the outcome of NK cell–to–myeloid cell interactions remain largely unknown, we sought to investigate the cross-talk between NK cells and suppressive myeloid cells. Upon contact with tumor-experienced NK cells, monocytes and neutrophils displayed increased expression of MDSC-related suppressive factors along with increased capacities to suppress T cells. These changes were accompanied by impaired antigen presentation by monocytes and increased ER stress response by neutrophils. In a cohort of patients with sarcoma and breast cancer, the production of interleukin-6 (IL-6) by tumor-infiltrating NK cells correlated with S100A8/9 and arginase-1 expression by MDSCs. At the same time, NK cell–derived IL-6 was associated with tumors with higher major histocompatibility complex class I expression, which we further validated with b2m-knockout (KO) tumor mice models. Similarly in syngeneic wild-type and IL-6 KO mouse models, we then demonstrated that the accumulation of MDSCs was influenced by the presence of such regulatory NK cells. Inhibition of the IL-6/signal transducer and activator of transcription 3 (STAT3) axis alleviated suppression of T cell responses, resulting in reduced tumor growth and metastatic dissemination. Together, these results characterize a critical NK cell–mediated mechanism that drives the development of MDSCs during tumor immune escape.
期刊介绍:
Science Translational Medicine is an online journal that focuses on publishing research at the intersection of science, engineering, and medicine. The goal of the journal is to promote human health by providing a platform for researchers from various disciplines to communicate their latest advancements in biomedical, translational, and clinical research.
The journal aims to address the slow translation of scientific knowledge into effective treatments and health measures. It publishes articles that fill the knowledge gaps between preclinical research and medical applications, with a focus on accelerating the translation of knowledge into new ways of preventing, diagnosing, and treating human diseases.
The scope of Science Translational Medicine includes various areas such as cardiovascular disease, immunology/vaccines, metabolism/diabetes/obesity, neuroscience/neurology/psychiatry, cancer, infectious diseases, policy, behavior, bioengineering, chemical genomics/drug discovery, imaging, applied physical sciences, medical nanotechnology, drug delivery, biomarkers, gene therapy/regenerative medicine, toxicology and pharmacokinetics, data mining, cell culture, animal and human studies, medical informatics, and other interdisciplinary approaches to medicine.
The target audience of the journal includes researchers and management in academia, government, and the biotechnology and pharmaceutical industries. It is also relevant to physician scientists, regulators, policy makers, investors, business developers, and funding agencies.