Multiomics profiling reveals the benefits of gamma-delta (γδ) T lymphocytes for improving the tumor microenvironment, immunotherapy efficacy and prognosis in cervical cancer

肿瘤微环境 细胞毒性T细胞 医学 癌症研究 免疫系统 免疫疗法 间质细胞 T细胞 肿瘤浸润淋巴细胞 免疫学 生物 生物化学 体外
作者
Junyi Li,Yuanjie Cao,Yan‐Cheng Liu,Yu Lu,Zhen Zhang,Xiaofeng Wang,Hui Bai,Yuhan Zhang,Shaochuan Liu,Miaomiao Gao,Chenglu Lu,Chen Li,Yong Guan,Zhen Tao,Zhiqiang Wu,Jie Chen,Zhiyong Yuan
出处
期刊:Journal for ImmunoTherapy of Cancer [BMJ]
卷期号:12 (1): e008355-e008355 被引量:3
标识
DOI:10.1136/jitc-2023-008355
摘要

Background As an unconventional subpopulation of T lymphocytes, γδ T cells can recognize antigens independently of major histocompatibility complex restrictions. Recent studies have indicated that γδ T cells play contrasting roles in tumor microenvironments—promoting tumor progression in some cancers (eg, gallbladder and leukemia) while suppressing it in others (eg, lung and gastric). γδ T cells are mainly enriched in peripheral mucosal tissues. As the cervix is a mucosa-rich tissue, the role of γδ T cells in cervical cancer warrants further investigation. Methods We employed a multiomics strategy that integrated abundant data from single-cell and bulk transcriptome sequencing, whole exome sequencing, genotyping array, immunohistochemistry, and MRI. Results Heterogeneity was observed in the level of γδ T-cell infiltration in cervical cancer tissues, mainly associated with the tumor somatic mutational landscape. Definitely, γδ T cells play a beneficial role in the prognosis of patients with cervical cancer. First, γδ T cells exert direct cytotoxic effects in the tumor microenvironment of cervical cancer through the dynamic evolution of cellular states at both poles. Second, higher levels of γδ T-cell infiltration also shape the microenvironment of immune activation with cancer-suppressive properties. We found that these intricate features can be observed by MRI-based radiomics models to non-invasively assess γδ T-cell proportions in tumor tissues in patients. Importantly, patients with high infiltration levels of γδ T cells may be more amenable to immunotherapies including immune checkpoint inhibitors and autologous tumor-infiltrating lymphocyte therapies, than to chemoradiotherapy. Conclusions γδ T cells play a beneficial role in antitumor immunity in cervical cancer. The abundance of γδ T cells in cervical cancerous tissue is associated with higher response rates to immunotherapy.
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