Department of Vascular Biology and Thrombosis Research, Center for Biomolecular Medicine and Pharmacology, Medical University of Vienna, Vienna, Austria.
Blood. 2010 May 13;115(19):3997-4005. doi: 10.1182/blood-2009-04-216069. Epub 2010 Jan 28.
During embryonic development, lymph sacs form from the cardinal vein, and sprout centrifugally to form mature lymphatic networks. Separation of the lymphatic from the blood circulation by a hitherto unknown mechanism is essential for the homeostatic function of the lymphatic system. O-glycans on the lymphatic endothelium have recently been suggested to be required for establishment and maintenance of distinct blood and lymphatic systems, primarily by mediating proper function of podoplanin. Here, we show that this separation process critically involves platelet activation by podoplanin. We found that platelet aggregates build up in wild-type embryos at the separation zone of podoplanin(+) lymph sacs and cardinal veins, but not in podoplanin(-/-) embryos. Thus, podoplanin(-/-) mice develop a "nonseparation" phenotype, characterized by a blood-filled lymphatic network after approximately embryonic day 13.5, which, however, partially resolves in postnatal mice. The same embryonic phenotype is also induced by treatment of pregnant mice with acetyl salicylic acid, podoplanin-blocking antibodies, or by inactivation of the kindlin-3 gene required for platelet aggregation. Therefore, interaction of endothelial podoplanin of the developing lymph sac with circulating platelets from the cardinal vein is critical for separating the lymphatic from the blood vascular system.
在胚胎发育过程中,淋巴囊从心静脉形成,并从中心向周围发芽形成成熟的淋巴管网络。淋巴系统的内稳态功能的一个关键是通过一个目前尚不清楚的机制将淋巴与血液循环分离。最近有研究表明,淋巴管内皮细胞上的 O-聚糖对于建立和维持独特的血液和淋巴系统是必需的,主要是通过调节足细胞蛋白的适当功能。在这里,我们表明,这个分离过程关键涉及到足细胞蛋白对血小板的激活。我们发现,在野生型胚胎中,血小板聚集物在 podoplanin(+)淋巴囊和心静脉的分离区积累,但在 podoplanin(-/-)胚胎中则没有。因此,podoplanin(-/-)小鼠表现出一种“未分离”的表型,其特征是在大约胚胎第 13.5 天之后出现充满血液的淋巴管网络,但在出生后小鼠中部分得到解决。用乙酰水杨酸、足细胞蛋白阻断抗体或血小板聚集所必需的黏着斑激酶 3 基因失活处理怀孕小鼠,也会导致同样的胚胎表型。因此,发育中的淋巴囊内皮细胞的 podoplanin 与来自心静脉的循环血小板之间的相互作用对于将淋巴与血管系统分离是至关重要的。