Song Hana, Jang Mi Gyeong, Lee Ju Yeop, Ko Hee Chul, Hur Sung-Pyo, Kim Se-Jae
Jeju Sasa Industry Development Agency, Jeju National University, Jeju, 63243, Republic of Korea.
Korea Institute of Ocean Science and Technology, Jeju, 63243, Republic of Korea.
Genes Genomics. 2019 Mar;41(3):317-324. doi: 10.1007/s13258-018-0765-2. Epub 2018 Nov 17.
It has been reported that various plant species may enhance the elimination of fatigue-related metabolites. However, relatively few studies have directly addressed the potential anti-fatigue effects.
The objective of this study was to investigate the anti-fatigue potential of a hot water extract of Sasa quelpaertensis Nakai leaf (SQH) in male ICR mice.
The animals were divided into three groups. The normal control (NC) group was administered saline without exercise every day for 7 days. The exercise control (EC) and exercise with SQH (ES) groups were administered saline and SQH (50 mg/kg of body weight), respectively, every day for 7 days and underwent swimming exercise. RNA sequencing technology was used to analyze the transcriptome profiles of muscle.
Swimming times were prolonged in the ES group compared with the EC group. The ES group had higher blood glucose and lower blood lactate levels, and higher muscular glycogen and lower muscular lactate levels, compared with the EC group. The groups did not differ in histopathological parameters of the muscle and liver, but muscle cell sizes were smaller in the EC group than in the ES and NC groups. RNA sequencing analysis revealed that SQH administration regulated genes associated with energy-generating metabolic pathways in skeletal muscle.
These results suggest that SQH exerts anti-fatigue properties by balancing various biological systems and helping maintain the basic harmonious pattern of the body.
据报道,多种植物物种可能会增强与疲劳相关代谢物的清除。然而,相对较少的研究直接探讨了潜在的抗疲劳作用。
本研究的目的是调查昆栏树(Sasa quelpaertensis Nakai)叶热水提取物(SQH)对雄性ICR小鼠的抗疲劳潜力。
将动物分为三组。正常对照组(NC)每天给予生理盐水且不进行运动,持续7天。运动对照组(EC)和SQH运动组(ES)每天分别给予生理盐水和SQH(50毫克/千克体重),持续7天,并进行游泳运动。使用RNA测序技术分析肌肉的转录组图谱。
与EC组相比,ES组的游泳时间延长。与EC组相比,ES组的血糖水平更高,血乳酸水平更低,肌肉糖原水平更高,肌肉乳酸水平更低。各组在肌肉和肝脏的组织病理学参数方面没有差异,但EC组的肌肉细胞大小比ES组和NC组小。RNA测序分析表明,给予SQH可调节与骨骼肌能量生成代谢途径相关的基因。
这些结果表明,SQH通过平衡各种生物系统并帮助维持身体的基本和谐模式发挥抗疲劳特性。