Comparison of Serum HIF-1α Levels in Swimming Athletes Before and After Hypoxic Non-Hypoxic Exercise

S. Syahrastani, A. Argantos, S. Farma
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引用次数: 4

Abstract

The situation of lack of oxygen supply to cells and tissues is often not realized by many people (hypoxia). Hypoxia can occur in various situations in life. The main effect of hypoxia is the effect on the brain, so the body will do everything it can to restore the state of homeostasis. HIF-1α protein is a marker of hypoxic conditions. HIF-1α regulates the synthesis of many genes to maintain and restore body homeostasis from hypoxia to normoxia. This study was a descriptive study with cross-sectional design. The sample of this study were six swimming athletes with a 12-19 year age range who met the inclusion and exclusion criteria. The HIF-1α protein is measured by the ELISA method. Data were analyzed statistically. The results showed higher levels of HIF-1α after anaerobic exercise than the levels of HIF-1α before and after aerobic exercise. This is greatly influenced by the intensity of the exercise carried out. This proves that cellular adaptation to hypoxia is more stable in aerobic exercise, where the body's metabolism during aerobic exercise is more stable  
游泳运动员缺氧非缺氧运动前后血清HIF-1α水平的比较
许多人往往没有意识到细胞和组织缺氧的情况(缺氧)。缺氧在生活中的各种情况下都会发生。缺氧的主要影响是对大脑的影响,所以身体会尽其所能恢复体内平衡的状态。HIF-1α蛋白是缺氧条件的标志。HIF-1α调节许多基因的合成,以维持和恢复机体从缺氧到常氧的稳态。本研究为横断面设计的描述性研究。本研究的样本为6名符合纳入和排除标准的12-19岁的游泳运动员。ELISA法检测HIF-1α蛋白。对数据进行统计学分析。结果表明,无氧运动后HIF-1α水平高于有氧运动前后HIF-1α水平。这在很大程度上受运动强度的影响。这证明细胞对缺氧的适应在有氧运动中更稳定,有氧运动时机体的代谢更稳定
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