Department of Cardiovascular and Metabolic Sciences, Lerner Research Institute, Cleveland Clinic, Cleveland, United States.
Cleveland Clinic Lerner College of Medicine of Case Western Reserve University, Cleveland, United States.
Elife. 2021 Jan 18;10:e64295. doi: 10.7554/eLife.64295.
Vascular endothelial cells (vECs) in the brain exhibit structural and functional heterogeneity. Fenestrated, permeable brain vasculature mediates neuroendocrine function, body-fluid regulation, and neural immune responses; however, its vascular formation remains poorly understood. Here, we show that specific combinations of vascular endothelial growth factors (Vegfs) are required to selectively drive fenestrated vessel formation in the zebrafish myelencephalic choroid plexus (mCP). We found that the combined, but not individual, loss of Vegfab, Vegfc, and Vegfd causes severely impaired mCP vascularization with little effect on neighboring non-fenestrated brain vessel formation, demonstrating fenestrated-vEC-specific angiogenic requirements. This Vegfs-mediated vessel-selective patterning also involves Ccbe1. Expression analyses, cell-type-specific ablation, and paracrine activity-deficient mutant characterization suggest that vEC-autonomous Vegfc and meningeal fibroblast-derived Vegfab and Vegfd are critical for mCP vascularization. These results define molecular cues and cell types critical for directing fenestrated CP vascularization and indicate that vECs' distinct molecular requirements for angiogenesis underlie brain vessel heterogeneity.
脑内的血管内皮细胞(vEC)表现出结构和功能的异质性。有孔的、可渗透的脑脉管系统介导神经内分泌功能、体液调节和神经免疫反应;然而,其血管形成仍然知之甚少。在这里,我们表明,血管内皮生长因子(Vegfs)的特定组合被需要选择性地驱动斑马鱼延髓脉络丛(mCP)中的有孔血管形成。我们发现, Vegfab、Vegfc 和 Vegfd 的联合而非单独缺失导致 mCP 血管生成严重受损,而对邻近的无孔脑血管形成几乎没有影响,表明有孔-vEC 有特定的血管生成需求。这种 Vegfs 介导的血管选择性模式也涉及到 Ccbe1。表达分析、细胞类型特异性消融和旁分泌活性缺陷 突变体特征表明,vEC 自主的 Vegfc 和脑膜成纤维细胞衍生的 Vegfab 和 Vegfd 对于 mCP 血管生成至关重要。这些结果定义了指导有孔 CP 血管生成的关键分子线索和细胞类型,并表明 vEC 对血管生成的不同分子需求是脑血管异质性的基础。