Department of Physical Education, São Paulo State University (UNESP), School of Science, Bauru, SP, Brazil.
Ribeirão Preto College of Nursing, USP-University of São Paulo, Ribeirão Preto, SP, Brazil.
PLoS One. 2018 Oct 18;13(10):e0206254. doi: 10.1371/journal.pone.0206254. eCollection 2018.
Endothelial nitric oxide synthase (eNOS) gene polymorphisms are associated with reduced eNOS activity and nitric oxide (NO) production leading to an increase in blood pressure (BP). Regular exercise is the main strategy to minimize the deleterious effects of polymorphisms. However, due to the differences that physical exercise can be performed, some controversial results are found. Therefore it seems reasonable to evaluate the training status (TS). Thus, this study aimed to investigate the association of eNOS gene haplotypes and different levels of TS on nitrite concentrations (NO2-) and BP values in older adult. 424 elderly performed the following assessments: General Functional Fitness Index (GFFI) to estimate TS, systolic and diastolic blood pressure (SBP and DBP), blood collection for analysis of NO2- and g.-786T>C, intron 4b/a (VNTR) and 894G>T polymorphisms. Multivariate logistic regression showed that NO2- was influenced by GFFI and 4b/4a Intron 4. Regarding BP, GFFI influenced SBP and DBP, and just intron 4 was associated with variations in DBP. It can be observed that GFFI affected the NO2-, SBP and DBP independently of haplotypes. Therefore, maintenance of good level of TS can overcome the negative influence of genetics factors (intron 4) by increasing NO2- concentration and decreasing BP values.
内皮型一氧化氮合酶 (eNOS) 基因多态性与 eNOS 活性和一氧化氮 (NO) 产生降低有关,导致血压 (BP) 升高。规律运动是最大限度减少多态性有害影响的主要策略。然而,由于运动方式的差异,一些结果存在争议。因此,评估训练状态 (TS) 似乎是合理的。因此,本研究旨在调查 eNOS 基因单倍型与不同 TS 水平与老年人硝酸盐浓度 (NO2-) 和 BP 值之间的关系。424 名老年人进行了以下评估:一般功能体能指数 (GFFI) 估计 TS、收缩压和舒张压 (SBP 和 DBP)、采血分析硝酸盐浓度和 g.-786T>C、内含子 4b/a (VNTR) 和 894G>T 多态性。多变量逻辑回归显示,NO2-受 GFFI 和 4b/4a 内含子 4 的影响。关于 BP,GFFI 影响 SBP 和 DBP,只有内含子 4 与 DBP 的变化有关。可以观察到,GFFI 独立于单倍型影响 NO2-、SBP 和 DBP。因此,保持良好的 TS 水平可以通过增加 NO2-浓度和降低 BP 值来克服遗传因素(内含子 4)的负面影响。