自然衰老小鼠血管周围脂肪组织中COX-2和NADPH氧化酶的上调以及eNOS的降低与抵抗性动脉功能障碍和高血压有关

Grazielle Caroline da Silva, Maisa Nascimento Soares Amaral, Diogo Barros Peruchetti, Virginia Soares Lemos
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引用次数: 0

摘要

衰老是心血管疾病的主要危险因素,高血压是最常见的结果。高血压常由动脉内皮功能障碍引起。最近的研究强调了血管周围脂肪组织(PVAT)在调节内皮功能中的关键作用。我们假设PVAT衰老与衰老过程中的血管功能障碍和高血压有关。我们发现自然衰老的小鼠出现高血压和促炎细胞因子水平升高。此外,抵抗性肠系膜动脉显示血管松弛受损,这是由抗氧化剂罗布麻素正常化的。血管功能障碍是内皮细胞和PVAT依赖的,其特征是:NO和cox依赖的血管舒张减少,内皮细胞一氧化氮合酶(eNOS)表达减少,内皮细胞和PVAT中环氧化酶2 (COX-2)和NADPH氧化酶亚基p22phox和gp91phox表达增加。此外,我们观察到PVAT表现出更大的衰老迹象,特别是p16表达较高,这表明PVAT更容易发生与年龄相关的细胞衰老。我们的研究结果表明,在抵抗性肠系膜动脉中,pvat衍生的因子对于触发和放大衰老血管功能障碍至关重要,从而导致高血压。潜在的机制涉及enos衍生的NO, nadph氧化酶依赖的氧化应激和cox -2衍生的血管收缩因子的下调。这项研究提高了我们对年龄相关血管功能障碍和相关高血压背后机制的理解,并为有针对性的治疗策略开辟了前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Upregulation of COX-2 and NADPH oxidase and reduced eNOS in perivascular adipose tissue are associated with resistance artery dysfunction and hypertension in naturally aged mice
Aging is a major risk factor for cardiovascular disease, with hypertension being the most common outcome. Hypertension often stems from resistance arteries endothelial dysfunction. Recent research highlights the pivotal role of perivascular adipose tissue (PVAT) in regulating endothelial function. We hypothesized that PVAT senescence contributes to vascular dysfunction and hypertension during aging. We showed that naturally aged mice developed hypertension and elevated pro-inflammatory cytokines levels. Moreover, resistance mesenteric arteries showed impaired vascular relaxation that was normalized by apocynin, an antioxidant. The vascular dysfunction was endothelium- and PVAT-dependent, and marked by: decreased NO- and COX-dependent vascular relaxation, decreased expression of endothelial nitric oxide synthase (eNOS), and increased cyclooxygenase 2 (COX-2) and NADPH oxidase subunits p22phox and gp91phox expressions in the endothelium and PVAT. Additionally, we observed that PVAT shows greater signs of senescence, particularly with higher p16 expression, indicating that PVAT is more prone to age-related cellular aging. Our findings suggest that in resistance mesenteric arteries PVAT-derived factors are crucial for triggering and amplifying vascular dysfunction in aging, leading to hypertension. The underlying mechanisms involve downregulation of eNOS-derived NO, NADPH-oxidase-dependent oxidative stress, and COX-2-derived vascular contractile factors. This research improves our understanding of the mechanisms behind age-related vascular dysfunction and associated hypertension and opens perspectives for targeted therapeutic strategies.
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