Department of Radiology, Oslo University Hospital - Rikshospitalet, Oslo, Norway.
Department of Geriatrics and Internal Medicine, Sorlandet Hospital, Arendal, Norway.
Cell Mol Life Sci. 2024 Mar 13;81(1):131. doi: 10.1007/s00018-024-05141-2.
The discoveries that cerebrospinal fluid participates in metabolic perivascular exchange with the brain and further drains solutes to meningeal lymphatic vessels have sparked a tremendous interest in translating these seminal findings from animals to humans. A potential two-way coupling between the brain extra-vascular compartment and the peripheral immune system has implications that exceed those concerning neurodegenerative diseases, but also imply that the central nervous system has pushed its immunological borders toward the periphery, where cross-talk mediated by cerebrospinal fluid may play a role in a range of neoplastic and immunological diseases. Due to its non-invasive approach, magnetic resonance imaging has typically been the preferred methodology in attempts to image the glymphatic system and meningeal lymphatics in humans. Even if flourishing, the research field is still in its cradle, and interpretations of imaging findings that topographically associate with reports from animals have yet seemed to downplay the presence of previously described anatomical constituents, particularly in the dura. In this brief review, we illuminate these challenges and assess the evidence for a glymphatic-lymphatic coupling. Finally, we provide a new perspective on how human brain and meningeal clearance function may possibly be measured in future.
脑脊液参与脑与脑膜淋巴管之间的代谢性血管周交换的发现,以及脑脊液进一步将溶质排出到脑膜淋巴管的发现,激发了将这些开创性发现从动物转化为人类的巨大兴趣。脑血管外腔室与外周免疫系统之间的潜在双向偶联不仅涉及神经退行性疾病,还意味着中枢神经系统已将其免疫边界推向了外周,其中脑脊液介导的串扰可能在一系列肿瘤和免疫性疾病中发挥作用。由于其非侵入性方法,磁共振成像通常是首选的方法,用于在人类中成像神经胶质系统和脑膜淋巴管。即使研究领域蓬勃发展,它仍处于起步阶段,与动物报告相关的影像学发现的解释似乎仍然低估了先前描述的解剖结构的存在,尤其是硬脑膜。在这篇简短的综述中,我们阐明了这些挑战,并评估了神经胶质-淋巴管偶联的证据。最后,我们提供了一个新的视角,探讨未来如何可能测量人类大脑和脑膜的清除功能。