淋巴系统
免疫系统
免疫监视
抗原
生物
癌症研究
淋巴管新生
CD8型
免疫学
获得性免疫系统
中枢神经系统
病理
医学
神经科学
癌症
转移
遗传学
作者
Eric Song,Tianyang Mao,Huiping Dong,Lígia Simões Braga Boisserand,Salli Antila,Marcus Bosenberg,Kari Alitalo,Jean‐Léon Thomas,Akiko Iwasaki
出处
期刊:Nature
[Springer Nature]
日期:2020-01-15
卷期号:577 (7792): 689-694
被引量:387
标识
DOI:10.1038/s41586-019-1912-x
摘要
Immune surveillance against pathogens and tumours in the central nervous system is thought to be limited owing to the lack of lymphatic drainage. However, the characterization of the meningeal lymphatic network has shed light on previously unappreciated ways that an immune response can be elicited to antigens that are expressed in the brain1-3. Despite progress in our understanding of the development and structure of the meningeal lymphatic system, the contribution of this network in evoking a protective antigen-specific immune response in the brain remains unclear. Here, using a mouse model of glioblastoma, we show that the meningeal lymphatic vasculature can be manipulated to mount better immune responses against brain tumours. The immunity that is mediated by CD8 T cells to the glioblastoma antigen is very limited when the tumour is confined to the central nervous system, resulting in uncontrolled tumour growth. However, ectopic expression of vascular endothelial growth factor C (VEGF-C) promotes enhanced priming of CD8 T cells in the draining deep cervical lymph nodes, migration of CD8 T cells into the tumour, rapid clearance of the glioblastoma and a long-lasting antitumour memory response. Furthermore, transfection of an mRNA construct that expresses VEGF-C works synergistically with checkpoint blockade therapy to eradicate existing glioblastoma. These results reveal the capacity of VEGF-C to promote immune surveillance of tumours, and suggest a new therapeutic approach to treat brain tumours.
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