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NAD(P)H oxidase and pro-inflammatory response during maximal exercise: Role of C242T polymorphism of the p22phox subunit

机译:NAD(P)H氧化酶和最大运动过程中的促炎反应:p22phox亚基的C242T多态性的作用

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摘要

Intense exercise induces a pro-inflammatory status through a mechanism involving the NAD(P)H oxidase system. We focused our attention on p22phox, a subunit of the NAD(P)H oxidase, and on its allelic polymorphism C242T, which is known to affect the functional activity of the enzyme. We investigated whether the p22phox C242T variants exhibit systemic effects in healthy subjects by analyzing the proinflammatory and cardiocirculatory responses to physical exercise in endurance athletes. The group of study consisted of 97 long distance runners, 37±4.4 yrs of age, with similar training history. The subjects underwent a maximal stress test during which both inflammatory and cardiopulmonary parameters were monitored. Our results demonstrate that T allele deeply influences the neutrophil activation in response to intense exercise, since T carriers were characterized by significantly lower release of myeloperoxidase (MPO), a classical leukocyte derived pro-inflammatory cytokine. In addition, the presence of T allele was associated with a higher cardiopulmonary efficiency as evidenced by a significantly lower Heart Rate (HR) at the peak of exercise and, when a dominant model was assumed, by a higher maximal oxygen uptake (VO 2 max). On the other hand, no effects of 242T mutation on the plasmatic total antioxidant capacity (TAC) and on the cortisol responses to the physical exercise were detected. In conclusion, our data support a systemic role for p22phox C242T polymorphism that, modifying the intensity of the inflammatory response, can influence the cardiovascular adaptations elicited by aerobic training. These results contribute to support the hypothesis of a systemic effect for the C242T polymorphism and of its possible functional rebound in healthy subjects.
机译:激烈运动通过涉及NAD(P)H氧化酶系统的机制诱导促炎状态。我们将注意力集中在p22phox(NAD(P)H氧化酶的一个亚基)及其等位基因多态性C242T(已知会影响该酶的功能活性)上。我们通过分析耐力运动员对体育锻炼的促炎性和心血管循环反应,研究了p22phox C242T变体在健康受试者中是否表现出全身性作用。研究组由97名长跑运动员组成,年龄在37±4.4岁,具有相似的训练经历。受试者进行了最大压力测试,在此期间监测了炎症和心肺参数。我们的结果表明,T等位基因对剧烈运动的反应中性粒细胞的激活有深远的影响,因为T携带者的特征是髓过氧化物酶(MPO)(一种经典的白细胞衍生的促炎性细胞因子)的释放显着降低。此外,T等位基因的存在与较高的心肺功能有关,运动高峰时的心率(HR)显着降低,而在假设为显性模型时,最大摄氧量(VO 2 max)也证明了这一点。 )。另一方面,未检测到242T突变对血浆总抗氧化能力(TAC)和皮质醇对体育锻炼的反应的影响。总而言之,我们的数据支持p22phox C242T多态性的系统性作用,该作用可改变炎症反应的强度,从而影响有氧训练引起的心血管适应。这些结果有助于支持C242T多态性及其在健康受试者中可能的功能反弹的全身效应的假说。

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