Saratov State University, Interdisciplinary Center of Critical Technologies in Medicine, Saratov, Russia.
Saratov State University, Department of Optics and Biophotonics, Saratov, Russia.
J Biomed Opt. 2017 Dec;22(12):1-9. doi: 10.1117/1.JBO.22.12.121719.
The meningeal lymphatic vessels were discovered 2 years ago as the drainage system involved in the mechanisms underlying the clearance of waste products from the brain. The blood-brain barrier (BBB) is a gatekeeper that strongly controls the movement of different molecules from the blood into the brain. We know the scenarios during the opening of the BBB, but there is extremely limited information on how the brain clears the substances that cross the BBB. Here, using the model of sound-induced opening of the BBB, we clearly show how the brain clears dextran after it crosses the BBB via the meningeal lymphatic vessels. We first demonstrate successful application of optical coherence tomography (OCT) for imaging of the lymphatic vessels in the meninges after opening of the BBB, which might be a new useful strategy for noninvasive analysis of lymphatic drainage in daily clinical practice. Also, we give information about the depth and size of the meningeal lymphatic vessels in mice. These new fundamental data with the applied focus on the OCT shed light on the mechanisms of brain clearance and the role of lymphatic drainage in these processes that could serve as an informative platform for a development of therapy and diagnostics of diseases associated with injuries of the BBB such as stroke, brain trauma, glioma, depression, or Alzheimer disease.
脑膜淋巴管在 2 年前被发现,是参与大脑清除废物的机制的引流系统。血脑屏障(BBB)是一个守门员,强烈控制着不同分子从血液进入大脑的运动。我们知道 BBB 开放时的情况,但关于大脑如何清除穿过 BBB 的物质的信息极为有限。在这里,我们使用声诱导 BBB 开放的模型,清楚地展示了大脑如何在 Dextran 穿过 BBB 后通过脑膜淋巴管清除它。我们首先证明了光学相干断层扫描(OCT)在 BBB 开放后对脑膜淋巴管成像的成功应用,这可能是日常临床实践中非侵入性分析淋巴引流的新有用策略。此外,我们还提供了关于小鼠脑膜淋巴管的深度和大小的信息。这些具有 OCT 应用重点的新基础数据揭示了大脑清除的机制以及淋巴引流在这些过程中的作用,这可以作为治疗和诊断与 BBB 损伤相关疾病(如中风、脑外伤、神经胶质瘤、抑郁症或阿尔茨海默病)的信息平台。