van Lessen Max, Shibata-Germanos Shannon, van Impel Andreas, Hawkins Thomas A, Rihel Jason, Schulte-Merker Stefan
Institute of Cardiovascular Organogenesis and Regeneration, WWU Münster, Münster, Germany.
Faculty of Medicine, WWU Münster, Münster, Germany.
Elife. 2017 May 12;6:e25932. doi: 10.7554/eLife.25932.
The lymphatic system controls fluid homeostasis and the clearance of macromolecules from interstitial compartments. In mammals brain lymphatics were only recently discovered, with significant implications for physiology and disease. We examined zebrafish for the presence of brain lymphatics and found loosely connected endothelial cells with lymphatic molecular signature covering parts of the brain without forming endothelial tubular structures. These brain lymphatic endothelial cells (BLECs) derive from venous endothelium, are distinct from macrophages, and are sensitive to loss of Vegfc. BLECs endocytose macromolecules in a selective manner, which can be blocked by injection of mannose receptor ligands. This first report on brain lymphatic endothelial cells in a vertebrate embryo identifies cells with unique features, including the uptake of macromolecules at a single cell level. Future studies will address whether this represents an uptake mechanism that is conserved in mammals and how these cells affect functions of the embryonic and adult brain.
淋巴系统控制着液体平衡以及间质间隙中大分子物质的清除。在哺乳动物中,脑淋巴管直到最近才被发现,这对生理学和疾病具有重要意义。我们检查了斑马鱼脑中是否存在淋巴管,发现有松散连接的具有淋巴分子特征的内皮细胞覆盖部分脑区,但未形成内皮管状结构。这些脑淋巴管内皮细胞(BLECs)起源于静脉内皮,与巨噬细胞不同,并且对Vegfc的缺失敏感。BLECs以选择性方式内吞大分子物质,这可以通过注射甘露糖受体配体来阻断。这篇关于脊椎动物胚胎中脑淋巴管内皮细胞的首次报道鉴定出了具有独特特征的细胞,包括在单细胞水平摄取大分子物质。未来的研究将探讨这是否代表一种在哺乳动物中保守的摄取机制,以及这些细胞如何影响胚胎和成年大脑的功能。