Sex differences in the predictors of skeletal muscle microvascular reactivity in older individuals

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Thiago Silveira Alvares , Felipe Mattioni Maturana , Rogerio Nogueira Soares
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Abstract

Aging is associated with an increased risk of cardiovascular disease and vascular dysfunction. Reduced nitric oxide bioavailability is considered one of the key mechanisms underlying vascular dysfunction in large arteries of older adults. However, the relationship between cardiovascular disease risk factors, nitric oxide bioavailability, and skeletal muscle microvascular reactivity, an early hallmark in cardiovascular disease progression, is unclear in older individuals. Also uncertain is whether this relationship is influenced by sex. Therefore, this study assessed the association between cardiovascular disease risk factors, circulating markers of nitric oxide availability (plasma nitrate and nitrite), and skeletal muscle microvascular reactivity in older individuals. First, we confirmed in a cohort of young and older individuals that aging is associated with skeletal muscle microvascular dysfunction. Next, we observed that skeletal muscle microvascular reactivity (P = 0.653; η2 = 0.016) and circulating nitric oxide metabolites (Nitrate: P = 0.641, η2 = 0.011; Nitrite: P = 0.560, η2 = 0.017; NOx: P = 0.639, η2 = 0.011) did not differ between older males and females. Finally, using multivariate regression models, we found that: (i) the number of cardiovascular risk factors was negatively associated with skeletal muscle microvascular reactivity in older males and females (B = −0.132, P = 0.044); (ii) the relationship between plasma nitrite and skeletal muscle microvascular reactivity was influenced by sex (F = 6.837, P = 0.016); and (iii) skeletal muscle microvascular reactivity in older females displayed a strong positive association with plasma nitrite (R2 = 0.720, P < 0.001). While the impact of cardiovascular disease risk factors on skeletal muscle microvascular reactivity was not influenced by sex, sex-related discrepancies were found in the relationship between nitric oxide bioavailability and skeletal muscle microvascular reactivity in older individuals.

预测老年人骨骼肌微血管反应性的性别差异
衰老与心血管疾病和血管功能障碍的风险增加有关。一氧化氮生物利用率降低被认为是老年人大动脉血管功能障碍的关键机制之一。然而,心血管疾病风险因素、一氧化氮生物利用率和骨骼肌微血管反应性(心血管疾病进展的早期标志)之间的关系在老年人中还不清楚。此外,这种关系是否受性别影响也不确定。因此,本研究评估了心血管疾病风险因素、一氧化氮可用性循环标志物(血浆硝酸盐和亚硝酸盐)与老年人骨骼肌微血管反应性之间的关系。首先,我们在一组年轻人和老年人中证实,衰老与骨骼肌微血管功能障碍有关。其次,我们观察到骨骼肌微血管反应性(P = 0.653; η2 = 0.016)和循环一氧化氮代谢物(硝酸盐,P = 0.641; η2 = 0.016)的变化:硝酸盐:P = 0.641,η2 = 0.011;亚硝酸盐:P = 0.560,η2 = 0.011:P=0.560,η2=0.017;NOx:P = 0.639,η2 = 0.011)在老年男性和女性之间没有差异。最后,通过多变量回归模型,我们发现(i) 在老年男性和女性中,心血管危险因素的数量与骨骼肌微血管反应性呈负相关(B = -0.132,P = 0.044);(ii) 血浆亚硝酸盐与骨骼肌微血管反应性之间的关系受性别影响(F = 6.837,P = 0.016);(iii) 老年女性骨骼肌微血管反应性与血浆亚硝酸盐呈强正相关(R2 = 0.720,P <0.001)。虽然心血管疾病风险因素对骨骼肌微血管反应性的影响不受性别影响,但在老年人一氧化氮生物利用度与骨骼肌微血管反应性之间的关系中发现了与性别有关的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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