首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Smooth Muscle Cell-Mineralocorticoid Receptor as a Mediator of Cardiovascular Stiffness With Aging
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Smooth Muscle Cell-Mineralocorticoid Receptor as a Mediator of Cardiovascular Stiffness With Aging

机译:平滑肌细胞 - ineralocorcoid受体作为心血管刚度的介质随老化

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Stiffening of the vasculature with aging is a strong predictor of adverse cardiovascular events, independent of all other risk factors including blood pressure, yet no therapies target this process. MRs (mineralocorticoid receptors) in smooth muscle cells (SMCs) have been implicated in the regulation of vascular fibrosis but have not been explored in vascular aging. Comparing SMC-MR-deleted male mice to MR-intact littermates at 3, 12, and 18 months of age, we demonstrated that aging-associated vascular stiffening and fibrosis are mitigated by MR deletion in SMCs. Progression of cardiac stiffness and fibrosis and the decline in exercise capacity with aging were also mitigated by MR deletion in SMC. Vascular gene expression profiling analysis revealed that MR deletion in SMC is associated with recruitment of a distinct antifibrotic vascular gene expression program with aging. Moreover, long-term pharmacological inhibition of MR in aged mice prevented the progression of vascular fibrosis and stiffness and induced a similar antifibrotic vascular gene program. Finally, in a small trial in elderly male humans, short-term MR antagonism produced an antifibrotic signature of circulating biomarkers similar to that observed in the vasculature of SMC-MR-deleted mice. These findings suggest that SMC-MR contributes to vascular stiffening with aging and is a potential therapeutic target to prevent the progression of aging-associated vascular fibrosis and stiffness.
机译:随着年龄的增长,血管硬化是心血管不良事件的一个强有力的预测因子,独立于包括血压在内的所有其他风险因素,但没有针对这一过程的治疗。平滑肌细胞(SMC)中的MRs(盐皮质激素受体)与血管纤维化的调节有关,但在血管衰老中尚未被探索。在3个月、12个月和18个月大时,将SMC MR缺失的雄性小鼠与MR完整的同窝小鼠进行比较,我们证明,SMC中的MR缺失可减轻与衰老相关的血管硬化和纤维化。随着年龄的增长,心肌僵硬和纤维化的进展以及运动能力的下降也因SMC的MR缺失而减轻。血管基因表达谱分析显示,随着年龄的增长,SMC中的MR缺失与一个独特的抗纤维化血管基因表达程序的招募有关。此外,对老年小鼠MR的长期药理学抑制阻止了血管纤维化和僵硬的进展,并诱导了类似的抗纤维化血管基因程序。最后,在一项针对老年男性的小型试验中,短期MR拮抗作用产生了循环生物标志物的抗纤维化特征,类似于在SMC MR缺失小鼠的血管系统中观察到的。这些研究结果表明,SMC-MR有助于随着年龄的增长血管硬化,是一个潜在的治疗靶点,以防止与年龄相关的血管纤维化和僵硬的进展。

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