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Lymph flow regulates collecting lymphatic vessel maturation in vivo

机译:淋巴流量调节体内收集淋巴管成熟

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摘要

Fluid shear forces have established roles in blood vascular development and function, but whether such forces similarly influence the low-flow lymphatic system is unknown. It has been difficult to test the contribution of fluid forces in vivo because mechanical or genetic perturbations that alter flow often have direct effects on vessel growth. Here, we investigated the functional role of flow in lymphatic vessel development using mice deficient for the platelet-specific receptor C-type lectin–like receptor 2 (CLEC2) as blood backfills the lymphatic network and blocks lymph flow in these animals. CLEC2-deficient animals exhibited normal growth of the primary mesenteric lymphatic plexus but failed to form valves in these vessels or remodel them into a structured, hierarchical network. Smooth muscle cell coverage (SMC coverage) of CLEC2-deficient lymphatic vessels was both premature and excessive, a phenotype identical to that observed with loss of the lymphatic endothelial transcription factor FOXC2. In vitro evaluation of lymphatic endothelial cells (LECs) revealed that low, reversing shear stress is sufficient to induce expression of genes required for lymphatic valve development and identified GATA2 as an upstream transcriptional regulator of FOXC2 and the lymphatic valve genetic program. These studies reveal that lymph flow initiates and regulates many of the key steps in collecting lymphatic vessel maturation and development.
机译:流体剪切力在血管的发育和功能中已经确立了作用,但是这种力是否同样会影响低流量淋巴系统尚不清楚。很难在体内测试流体的作用,因为改变流量的机械或遗传扰动常常直接影响血管的生长。在这里,我们使用缺乏血小板特异性受体C型凝集素样受体2(CLEC2)的小鼠作为血液回填淋巴网络并阻断这些动物的淋巴液流动的方法,研究了血流在淋巴管发育中的功能作用。缺乏CLEC2的动物表现出原肠系膜淋巴丛的正常生长,但未能在这些血管中形成瓣膜或将其重塑为结构化的分层网络。 CLEC2缺失的淋巴管的平滑肌细胞覆盖(SMC覆盖)既早又过量,其表型与淋巴管内皮转录因子FOXC2缺失时观察到的相同。淋巴管内皮细胞(LECs)的体外评估表明,低的反向切应力足以诱导淋巴阀发育所需的基因表达,并确定GATA2是FOXC2的上游转录调节因子和淋巴阀遗传程序。这些研究表明,淋巴液流动可启动和调节收集淋巴管成熟和发育的许多关键步骤。

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