Health Technology College, Jilin Sport University, Changchun 130022, China.
Department of Anatomy, College of Medicine, Chang Gung University, Taoyuan 33301, Taiwan.
Molecules. 2019 Mar 28;24(7):1225. doi: 10.3390/molecules24071225.
(AC) is a rare and unique mushroom that is difficult to cultivate. Previous studies have demonstrated the bioactivity of the compound Ergosta-7,9(11),22-trien-3β-ol (EK100) from AC in submerged culture. The purpose of this study is to evaluate the potential beneficial effects of EK100 on fatigue and ergogenic functions following physiological challenge. Male ICR (Institute of Cancer Research) mice were randomly divided into three groups (n = 8 per group) and orally administered EK100 for six weeks at 0 (Vehicle), 10 (EK100-1X), and 20 (EK100-2X) mg/kg/day. The six-week Ek100 supplementation significantly increased grip strength ( 0.0051) in trend analysis. Anti-fatigue activity was evaluated using 15-min. acute exercise testing and measuring the levels of serum lactate, ammonia, glucose, blood urea nitrogen (BUN), and creatine kinase (CK) after a 15-min. swimming exercise. Our results indicate that AC supplementation leads to a dose-dependent decrease in serum lactate, ammonia, BUN, and CK activity after exercise and significantly increases serum glucose and glycogen content in liver tissues. Biochemical and histopathological data demonstrated that long term daily administration of EK100 for over six weeks (subacute toxicity) was safe. EK100's anti-fatigue properties appear to be through the preservation of energy storage, increasing blood glucose and liver glycogen content, and decreasing the serum levels of lactate, ammonia, BUN, and CK. EK100 could potentially be used to improve exercise physiological adaptation, promote health, and as a potential ergogenic aid in combination with different nutrient strategies.
(AC) 是一种罕见且独特的蘑菇,难以栽培。先前的研究已经证明了 AC 中化合物麦角甾-7,9(11),22-三烯-3β-醇(EK100)在液体培养中的生物活性。本研究旨在评估 EK100 对生理挑战后疲劳和运动表现的潜在有益影响。雄性 ICR(癌症研究所)小鼠被随机分为三组(每组 n = 8),并分别以 0(对照)、10(EK100-1X)和 20(EK100-2X)mg/kg/天的剂量经口给予 EK100 六周。趋势分析显示,六周的 EK100 补充显著增加了握力(0.0051)。通过 15 分钟急性运动测试和 15 分钟游泳运动后测量血清乳酸、氨、葡萄糖、血尿素氮(BUN)和肌酸激酶(CK)水平来评估抗疲劳活性。我们的结果表明,AC 补充剂可导致运动后血清乳酸、氨、BUN 和 CK 活性呈剂量依赖性下降,并显著增加肝组织中血清葡萄糖和肝糖原含量。生化和组织病理学数据表明,长期每日给予 EK100 超过六周(亚急性毒性)是安全的。EK100 的抗疲劳特性似乎是通过保存能量储存、增加血糖和肝糖原含量以及降低血清乳酸、氨、BUN 和 CK 水平来实现的。EK100 可能被用于改善运动生理适应、促进健康,并与不同的营养策略结合作为潜在的运动表现增强剂。