Curry T, Barrameda M E, Currier Thomas T, Esfandiarei M
bioRxiv. 2023 Nov 18:2023.11.18.567641. doi: 10.1101/2023.11.18.567641.
In individuals with Marfan Syndrome (MFS), fibrillin-1 gene ( ) mutations can lead to vascular wall weakening and dysfunction. The experimental mouse model of MFS ( ) has been advantageous in investigating MFS-associated life-threatening aortic aneurysms. Although the MFS mouse model presents an accelerated-aging phenotype in elastic organs (e.g., lung, skin), the impact of mutations on other central and peripheral arteries function and structure with the consideration of the impact of sex remains underexplored. In this study, we investigate if mutation contributes to sex-dependent alterations in central and cerebral vascular function similar to phenotypic changes associated with normal aging in healthy control mice. ultrasound imaging of central and cerebral vasculature was performed in 6-month-old male and female MFS and C57BL/6 mice and sex-matched 12-month-old (middle-aged) healthy control mice. Our findings confirm aortic enlargement (aneurysm) and wall stiffness in MFS mice, but with exacerbation in male diameters. Coronary artery blood flow velocity (BFV) in diastole was not different but left pulmonary artery BFV was decreased in MFS and 12-month-old control mice regardless of sex. At 6 months of age, MFS male mice show decreased posterior cerebral artery BFV as compared to age-matched control males, with no difference observed between female cohorts. Reduced mitral valve early-filling velocities were indicated in MFS mice regardless of sex. Male MFS mice also demonstrated left ventricular hypertrophy. Overall, these results underscore the significance of biological sex in vascular function and structure in MFS mice, while highlighting a trend of pre-mature vascular aging phenotype in MFS mice that is comparable to phenotypes observed in older healthy controls.
在患有马凡综合征(MFS)的个体中,原纤维蛋白-1基因( )突变可导致血管壁变薄和功能障碍。MFS的实验小鼠模型( )在研究与MFS相关的危及生命的主动脉瘤方面具有优势。尽管MFS小鼠模型在弹性器官(如肺、皮肤)中呈现加速衰老的表型,但考虑到性别影响, 突变对其他中枢和外周动脉功能及结构的影响仍未得到充分研究。在本研究中,我们调查 突变是否会导致中枢和脑血管功能出现性别依赖性改变,类似于健康对照小鼠正常衰老相关的表型变化。对6个月大的雄性和雌性MFS小鼠以及C57BL/6小鼠和性别匹配的12个月大(中年)健康对照小鼠进行了中枢和脑血管系统的超声成像。我们的研究结果证实了MFS小鼠存在主动脉扩张(动脉瘤)和血管壁僵硬,但男性直径的扩张更为严重。舒张期冠状动脉血流速度(BFV)没有差异,但MFS小鼠和12个月大的对照小鼠的左肺动脉BFV均降低,且与性别无关。在6个月大时,与年龄匹配的对照雄性小鼠相比,MFS雄性小鼠的大脑后动脉BFV降低,而雌性组之间未观察到差异。无论性别,MFS小鼠的二尖瓣早期充盈速度均降低。雄性MFS小鼠还表现出左心室肥厚。总体而言,这些结果强调了生物性别在MFS小鼠血管功能和结构中的重要性,同时突出了MFS小鼠过早出现血管衰老表型的趋势,这与老年健康对照小鼠观察到的表型相当。