Li Liming, Liu Xiaqing, Zhao Mingguang, Guo Peng, Zhang Haifeng
Institute of Biotechnology, College of Life and Health Sciences, Northeastern University, Shenyang, China.
Department of Neurosurgery, General Hospital of Northern Theater Command, Shenyang, China.
Sci Prog. 2021 Jul-Sep;104(3):368504211028387. doi: 10.1177/00368504211028387.
Brain arteriovenous malformation (BAVM) is an abnormality in the cerebral vascular system. Although the upregulation of the Notch signalling pathway is a deterministic factor in BAVM, the mechanism by which this pathway is upregulated in patients with BAVM is uncertain. The effects of serum starvation and vascular endothelial growth factor (VEGF) stimulation on the Notch signalling pathway in brain microvascular endothelial cells (MECs) and mouse embryonic stem (mES)/embryoid body (EB)-derived endothelial cells were investigated in this study. The duration of serum starvation and VEGF concentration were changed, cell viability was measured, and reasonable time and concentration gradients were selected for subsequent studies. Protein and mRNA expression levels of Notch signalling pathway components in both MECs and mES/EB-derived endothelial cells were detected using western blotting and real-time PCR, respectively. Expression levels of the Notch1, Notch4, Jagged1, delta-like ligand 4 (Dll4) and Hes1 proteins and mRNAs were upregulated by lower VEGF concentrations and shorter-term serum starvation but inhibited by higher VEGF concentrations and longer-term serum starvation. This study revealed effects of changes in the duration of serum starvation and VEGF concentration on the expression of Notch signalling pathway components in both MECs and mES/EB-derived endothelial cells, potentially contributing to BAVM formation.
脑动静脉畸形(BAVM)是脑血管系统的一种异常。尽管Notch信号通路的上调是BAVM的一个决定性因素,但该通路在BAVM患者中上调的机制尚不清楚。本研究探讨了血清饥饿和血管内皮生长因子(VEGF)刺激对脑微血管内皮细胞(MECs)以及小鼠胚胎干细胞(mES)/胚状体(EB)来源的内皮细胞中Notch信号通路的影响。改变血清饥饿的持续时间和VEGF浓度,测量细胞活力,并选择合理的时间和浓度梯度用于后续研究。分别使用蛋白质印迹法和实时PCR检测MECs以及mES/EB来源的内皮细胞中Notch信号通路成分的蛋白质和mRNA表达水平。较低的VEGF浓度和较短时间的血清饥饿可上调Notch1、Notch4、Jagged1、Delta样配体4(Dll4)和Hes1蛋白及mRNA的表达水平,但较高的VEGF浓度和较长时间的血清饥饿则会抑制其表达。本研究揭示了血清饥饿持续时间和VEGF浓度的变化对MECs以及mES/EB来源的内皮细胞中Notch信号通路成分表达的影响,这可能与BAVM的形成有关。