Center for Molecular Imaging, The Brown Foundation Institute of Molecular Medicine at The University of Texas Health Science Center at Houston, Houston, TX, USA.
Center for Laboratory Animal Medicine and Care, The University of Texas Health Science Center at Houston, Houston, TX, USA.
Physiol Rep. 2020 Feb;8(4):e14375. doi: 10.14814/phy2.14375.
Evidence overwhelmingly suggests that the lymphatics play a critical role in the clearance of cerebrospinal fluid (CSF) from the cranial space. Impairment of CSF outflow into the lymphatics is associated with a number of pathological conditions including spaceflight-associated neuro-ocular syndrome (SANS), a problem that limits long-duration spaceflight. We used near-infrared fluorescence lymphatic imaging (NIRFLI) to dynamically visualize the deep lymphatic drainage pathways shared by CSF outflow and disrupted during head-down tilt (HDT), a method used to mimic the cephalad fluid shift that occurs in microgravity. After validating CSF clearance into the lymph nodes of the neck in swine, a pilot study was conducted in human volunteers to evaluate the effect of gravity on the flow of lymph through these deep cervical lymphatics. Injected into the palatine tonsils, ICG was imaged draining into deep jugular lymphatic vessels and subsequent cervical lymph nodes. NIRFLI was performed under HDT, sitting, and supine positions. NIRFLI shows that lymphatic drainage through pathways shared by CSF outflow are dependent upon gravity and are impaired under short-term HDT. In addition, lymphatic contractile rates were evaluated from NIRFLI following intradermal ICG injections of the lower extremities. Lymphatic contractile activity in the legs was slowed in the gravity neutral, supine position, but increased under the influence of gravity regardless of whether its force direction opposed (sitting) or favored (HDT) lymphatic flow toward the heart. These studies evidence the role of a lymphatic contribution in SANS.
大量证据表明,淋巴系统在清除颅腔中的脑脊液(CSF)方面起着至关重要的作用。CSF 向淋巴系统流出的障碍与许多病理状况有关,包括与航天相关的神经眼综合征(SANS),这是限制长时间航天飞行的一个问题。我们使用近红外荧光淋巴成像(NIRFLI)来动态可视化 CSF 流出和头低位倾斜(HDT)期间中断的深部淋巴引流途径,HDT 是一种模拟微重力下发生的向头侧液体转移的方法。在验证了猪的 CSF 进入颈部淋巴结的清除后,在人类志愿者中进行了一项初步研究,以评估重力对这些深部颈淋巴通过这些深部颈淋巴的影响。将 ICG 注入腭扁桃体后,可观察到其排入深部颈内淋巴管和随后的颈部淋巴结。在 HDT、坐姿和仰卧位进行 NIRFLI。NIRFLI 显示,通过 CSF 流出途径共享的淋巴引流依赖于重力,并且在短期 HDT 下受损。此外,还通过对下肢进行 NIRFLI 评估 ICG 皮内注射后的淋巴收缩率。在中立重力、仰卧位时,腿部的淋巴收缩活动减慢,但无论重力的方向是(坐姿)还是促进(HDT)淋巴流向心脏,都会增加。这些研究证明了淋巴系统在 SANS 中的作用。