Shepley Brooke R, Lester Nick J, Yacoub Lana H, Bain Anthony R
Department of Kinesiology, Faculty of Human Kinetics, University of Windsor, Windsor, ON, Canada.
Transl Exerc Biomed. 2025 May 28;2(2):74-82. doi: 10.1515/teb-2025-0006. eCollection 2025 Jul.
Notch1 is a mechanosensitive endothelial receptor that responds to vascular wall shear stress. However, data on Notch1 activity in humans remains limited, particularly regarding its role in endothelial function.
Accordingly, the purpose of this study was to determine whether Notch1 is associated with the flow-mediated dilatory (FMD) response and whether it is related to aerobic fitness. A secondary purpose was to determine whether Notch1 is related to concentrations of vascular endothelial growth factor (VEGF).
Sixteen (8M/8F) young (20-30 yrs old) and healthy (BMI: 25 ± 4.2 kg/m, blood pressure: 117 ± 11.63/69 ± 11.25 mmHg) adults participated in the study. Aerobic fitness was determined by cycle V̇O peak. An FMD was performed on the brachial artery, and blood samples were taken from an antecubital vein at rest (baseline) and 1 min after cuff deflation (to align with peak vessel dilation). Concentrations of Notch1 extracellular domain (NECD) and VEGF were determined from plasma using enzyme-linked immunosorbent assays.
In contrast to our hypothesis, concentrations of NECD and VEGF did not change throughout the FMD and were unrelated to allometrically scaled FMD values (p all>0.05). Likewise, there was no relationship between changes in NECD and VEGF (p=0.331, r=0.127). However, the change in NECD across the FMD was moderately (r=0.515) and significantly (p=0.024) correlated with V̇O peak.
These novel data indicate that in healthy young adults, Notch1 activity is linked to aerobic fitness but may not be acutely involved in the shear-mediated vasodilatory response.
Notch1是一种机械敏感的内皮受体,对血管壁剪切应力作出反应。然而,关于人类Notch1活性的数据仍然有限,特别是关于其在内皮功能中的作用。
因此,本研究的目的是确定Notch1是否与血流介导的扩张(FMD)反应相关,以及它是否与有氧适能有关。第二个目的是确定Notch1是否与血管内皮生长因子(VEGF)的浓度有关。
16名(8名男性/8名女性)年轻(20 - 30岁)且健康(体重指数:25±4.2kg/m,血压:117±11.63/69±11.25mmHg)的成年人参与了该研究。通过自行车运动峰值摄氧量来确定有氧适能。对肱动脉进行FMD检测,并在静息状态(基线)和袖带放气后1分钟(与血管扩张峰值一致)从前臂静脉采集血样。使用酶联免疫吸附测定法从血浆中测定Notch1细胞外结构域(NECD)和VEGF的浓度。
与我们的假设相反,在整个FMD过程中,NECD和VEGF的浓度没有变化,并且与按比例缩放的FMD值无关(所有p值>0.05)。同样,NECD和VEGF的变化之间没有关系(p = 0.331,r = 0.127)。然而,FMD过程中NECD的变化与运动峰值摄氧量呈中度(r = 0.515)且显著(p = 0.024)相关。
这些新数据表明,在健康的年轻成年人中,Notch1活性与有氧适能相关,但可能不直接参与剪切力介导的血管舒张反应。