3. Medical Support Center, the 940th Hospital of Joint Logistics Support Force of Chinese People's Liberation Army, Lanzhou 730050, China.
Zhejiang Da Xue Xue Bao Yi Xue Ban. 2021 Oct 25;50(5):575-581. doi: 10.3724/zdxbyxb-2021-0319.
: To investigate the protective effect of 7-hydroxyethyl chrysin (7-HEC) on rats with exercise-induced fatigue in hypobaric hypoxic condition.Forty healthy male Wistar rats were randomly divided into four groups with 10 rats in each group: control group, model group, chrysin group and 7-HEC group. The rats in control group were raised at local altitude but other three groups were raised in a simulating altitude of for hypobaric hypoxia treatment. The chrysin group and 7-HEC group were given chrysin or 7-HEC by gavage for respectively; while the control group and model group were given the same amount of sterilized water. The weight-bearing swimming tests were performed 3 d later, and the weight-bearing swimming time was documented. After rats were sacrificed, the liver and skeletal muscle tissue samples were taken for pathological examination and determination of lactate, malondialdehyde (MDA), total superoxide dismutase (T-SOD) and glycogen levels. Blood urea nitrogen was also determined. Compared with the model group, weight-bearing swimming times were significantly prolonged in 7-HEC group [ vs. (4.04±1.30) min, <0.01]; pathological changes in liver and skeletal muscle tissue were attenuated; generation rate of blood urea nitrogen vs. 0.60) mmol·L·min, <0.05], lactate [liver: (0.14±0.05) vs. (0.10±0.03) mg·g·min, skeletal muscle: vs. (0.18±] and MDA [liver: (0.48) vs. (0.78±0.28) nmol·mg·min, skeletal muscle: (0.87±0.19) vs. (0.63±0.11) nmol·mg·min] were significantly reduced (all < 0.05); glycogen content [liver: (15.16±2.69) vs. skeletal muscle: (1.46±0.49) vs.0.48) mg/g] and T-SOD [liver: (1.87±0.01) vs. (2.68±0.12) U/mL, skeletal muscle: 0.42) vs. 0.96) U/mL] were significantly improved (all <0.05). 7-HEC has significant protective effect on the rats with exercise-induced fatigue in hypobaric hypoxia condition.
研究 7-羟乙基白杨素(7-HEC)对低压缺氧条件下运动性疲劳大鼠的保护作用。
将 40 只健康雄性 Wistar 大鼠随机分为 4 组,每组 10 只:对照组、模型组、白杨素组和 7-HEC 组。对照组在当地海拔高度饲养,其他 3 组在模拟海拔高度进行低压缺氧处理。白杨素组和 7-HEC 组分别灌胃给予白杨素或 7-HEC;对照组和模型组给予等量无菌水。3 d 后进行负重游泳试验,记录负重游泳时间。处死大鼠后,取肝、骨骼肌组织标本行病理检查,测定乳酸、丙二醛(MDA)、总超氧化物歧化酶(T-SOD)和糖原水平。同时测定血尿素氮。
与模型组相比,7-HEC 组大鼠负重游泳时间明显延长[(4.04±1.30)min,<0.01];肝、骨骼肌组织病理变化减轻;血尿素氮生成率[(0.60)mmol·L·min]较模型组显著降低(0.05)],乳酸[肝:(0.14±0.05)vs.(0.10±0.03)mg·g·min,骨骼肌:(0.18±]和 MDA[肝:(0.48)vs.(0.78±0.28)nmol·mg·min,骨骼肌:(0.87±0.19)vs.(0.63±0.11)nmol·mg·min]均明显降低(均<0.05);肝糖原含量[(15.16±2.69)vs.骨骼肌:(1.46±0.49)vs.0.48)mg/g]和 T-SOD[肝:(1.87±0.01)vs.(2.68±0.12)U/mL,骨骼肌:0.42)vs. 0.96)U/mL]均明显升高(均<0.05)。
7-HEC 对低压缺氧条件下运动性疲劳大鼠有明显的保护作用。