Tiemeijer Laura A, Ristori Tommaso, Stassen Oscar M J A, Ahlberg Jaakko J, de Bijl Jonne J J, Chen Christopher S, Bentley Katie, Bouten Carlijn V C, Sahlgren Cecilia M
Faculty for Science and Engineering, Biosciences, Åbo Akademi University, Turku, 20500, Finland.
Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, 5612 AZ, the Netherlands.
iScience. 2022 Apr 27;25(5):104306. doi: 10.1016/j.isci.2022.104306. eCollection 2022 May 20.
Spatial regulation of angiogenesis is important for the generation of functional engineered vasculature in regenerative medicine. The Notch ligands Jag1 and Dll4 show distinct expression patterns in endothelial cells and, respectively, promote and inhibit endothelial sprouting. Therefore, patterns of Notch ligands may be utilized to spatially control sprouting, but their potential and the underlying mechanisms of action are unclear. Here, we coupled and models to analyze the ability of micropatterned Jag1 and Dll4 ligands to spatially control endothelial sprouting. Dll4 patterns, but not Jag1 patterns, elicited spatial control. Computational simulations of the underlying signaling dynamics suggest that different timing of Notch activation by Jag1 and Dll4 underlie their distinct ability to spatially control sprouting. Hence, Dll4 patterns efficiently direct the sprouts, whereas longer exposure to Jag1 patterns is required to achieve spatial control. These insights in sprouting regulation offer therapeutic handles for spatial regulation of angiogenesis.
血管生成的空间调控对于再生医学中功能性工程化脉管系统的生成至关重要。Notch配体Jag1和Dll4在内皮细胞中表现出不同的表达模式,分别促进和抑制内皮细胞的出芽。因此,Notch配体的模式可用于在空间上控制出芽,但其潜力和潜在作用机制尚不清楚。在这里,我们结合[具体内容缺失]模型来分析微图案化的Jag1和Dll4配体在空间上控制内皮细胞出芽的能力。Dll4模式而非Jag1模式引发了空间控制。对潜在信号动力学的计算模拟表明,Jag1和Dll4激活Notch的不同时间是它们在空间上控制出芽的不同能力的基础。因此,Dll4模式有效地引导出芽,而需要更长时间暴露于Jag1模式才能实现空间控制。这些关于出芽调控的见解为血管生成的空间调控提供了治疗手段。