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首页> 外文期刊>BioMed research international >Antifatigue Activity of Liquid Cultured Tricholoma matsutake Mycelium Partially via Regulation of Antioxidant Pathway in Mouse
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Antifatigue Activity of Liquid Cultured Tricholoma matsutake Mycelium Partially via Regulation of Antioxidant Pathway in Mouse

机译:液体培养滴毛瘤松弛菌丝体的抗皱活动部分通过调节小鼠抗氧化途径

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摘要

Tricholoma matsutake has been popular as food and biopharmaceutical materials in Asian countries for its various pharmacological activities. The present study aims to analyze the antifatigue effects on enhancing exercise performance of Tricholoma matsutake fruit body (ABM) and liquid cultured mycelia (TM) in mouse model. Two-week Tricholoma matsutake treatment significantly enhances the exercise performance in weight-loaded swimming, rotating rod, and forced running test. In TM- and ABM-treated mice, some factors were observed at 60 min after swimming compared with nontreated mice, such as the increased levels of adenosine triphosphate (ATP), antioxidative enzymes, and glycogen and the reduced levels of malondialdehyde and reactive oxygen species in muscle, liver, and/or serum. Further data obtained from western blot show that CM and ABM have strongly enhanced the activation of 5'-AMP-activated protein kinase (AMPK), and the expressions of peroxisome proliferator have activated receptor y coactivator-lα (PGC-lα) and phosphofructokinase-1 (PFK-1) in liver. Our data suggest that both Tricholoma matsutake fruit body and liquid cultured mycelia possess antifatigue effects related to AMPK-linked antioxidative pathway. The information uncovered in our study may serve as a valuable resource for further identification and provide experimental evidence for clinical trials of Tricholoma matsutake as an effective agent against fatigue related diseases.
机译:松茸一直是受欢迎的食品和生物制药材料在亚洲国家的各种药理活性。本研究的目的来分析增强松茸子实体(ABM)和在小鼠模型中的液体培养的菌丝体(TM)的运动性能的抗疲劳作用。两周松茸治疗显著提高了体重负重游泳,旋转杆,并迫使运行测试运动性能。在TM-和ABM处理的小鼠,在60分钟时观察到一些因素与未处理的小鼠,如三磷酸腺苷(ATP),抗氧化酶和糖原水平的提高和丙二醛的水平降低和反应性氧物质相比游泳后在肌肉,肝脏,和/或血清。从免疫印迹表明,CM和ABM强烈增强的5'-AMP-活化的蛋白激酶(AMPK)的活化,和过氧化物酶体增殖的表达获得的进一步的数据已激活受体γ共激活剂-Lα(PGC-Lα)和phosphofructokinase- 1(PFK-1)肝脏。我们的数据表明,这两个松茸子实体和液体培养菌丝体具有与AMPK联抗氧化途径抗疲劳作用。在我们的研究中发现的信息可以作为进一步鉴定的宝贵资源和松茸的临床试验作为对疲劳有关的疾病的有效药物提供实验依据。

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