Compartmentalized ocular lymphatic system mediates eye–brain immunity

淋巴系统 神经科学 视神经 中枢神经系统 淋巴管新生 豁免特权 生物 病理 医学 免疫学 免疫系统 遗传学 癌症 转移
作者
Xiangyun Yin,Sophia Zhang,Ju-Hyun Lee,Huiping Dong,George Mourgkos,Gordon Terwilliger,Aurora Kraus,Luiz Henrique Geraldo,Mathilde Poulet,Suzanne Fischer,Ting Zhou,Farrah S. Mohammed,Jiangbing Zhou,Yongfu Wang,Seth Malloy,Nicolas Rohner,Lokesh Sharma,Irene Salinas,Anne Eichmann,Jean‐Léon Thomas,W. Mark Saltzman,Anita Hüttner,Caroline J. Zeiss,Aaron M. Ring,Akiko Iwasaki,Eric Song
出处
期刊:Nature [Springer Nature]
卷期号:628 (8006): 204-211 被引量:26
标识
DOI:10.1038/s41586-024-07130-8
摘要

Abstract The eye, an anatomical extension of the central nervous system (CNS), exhibits many molecular and cellular parallels to the brain. Emerging research demonstrates that changes in the brain are often reflected in the eye, particularly in the retina 1 . Still, the possibility of an immunological nexus between the posterior eye and the rest of the CNS tissues remains unexplored. Here, studying immune responses to herpes simplex virus in the brain, we observed that intravitreal immunization protects mice against intracranial viral challenge. This protection extended to bacteria and even tumours, allowing therapeutic immune responses against glioblastoma through intravitreal immunization. We further show that the anterior and posterior compartments of the eye have distinct lymphatic drainage systems, with the latter draining to the deep cervical lymph nodes through lymphatic vasculature in the optic nerve sheath. This posterior lymphatic drainage, like that of meningeal lymphatics, could be modulated by the lymphatic stimulator VEGFC. Conversely, we show that inhibition of lymphatic signalling on the optic nerve could overcome a major limitation in gene therapy by diminishing the immune response to adeno-associated virus and ensuring continued efficacy after multiple doses. These results reveal a shared lymphatic circuit able to mount a unified immune response between the posterior eye and the brain, highlighting an understudied immunological feature of the eye and opening up the potential for new therapeutic strategies in ocular and CNS diseases.
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