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纸质出版日期:2013
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邓启烈, 陈梅, 莫伟彬, 等. 罗汉果叶黄酮及游泳训练对力竭大鼠股四头肌组织ATP酶代谢的影响[J]. 中国实验方剂学杂志, 2013,19(5):181-185.
DENG Qi-lie, CHEN Mei, MO Wei-bin, et al. Effects of Leaves Flavonoid and Swim Training on Metabolism of ATPase in Quadriceps of Exhaustive Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(5): 181-185.
邓启烈, 陈梅, 莫伟彬, 等. 罗汉果叶黄酮及游泳训练对力竭大鼠股四头肌组织ATP酶代谢的影响[J]. 中国实验方剂学杂志, 2013,19(5):181-185. DOI:
DENG Qi-lie, CHEN Mei, MO Wei-bin, et al. Effects of Leaves Flavonoid and Swim Training on Metabolism of ATPase in Quadriceps of Exhaustive Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(5): 181-185. DOI:
目的: 通过建立大强度耐力训练及一次力竭性游泳运动损伤模型
研究罗汉果叶黄酮抗疲劳能力以及维持细胞膜内外的渗透压及跨膜电位平衡中的作用。 方法: 选用健康雄性SD大鼠40只
2~3月龄
体重180~220 g
随机分成5组
每组8只
即:安静对照组、安静力竭组、安静给药力竭组、训练力竭组、训练+给药力竭组。给药量以生理盐水配成含罗汉果黄酮提取物200 mg·kg-1·d-1(20 g·L-1的溶液
按10.0 mL·kg-1·d-1 ig给药)
对照组ig等量的生理盐水。在递增负荷游泳训练4周后
各组进行3%的负重力竭性游泳训练
准确记录力竭时间后即刻断头取血(安静对照组同时取血);测定股四头肌的三磷酸腺苷(ATP)酶(ATPase)相关指标的含量。 结果: 力竭运动后即刻
Na+/K+-ATP酶活性除训练给药组外均极显著下降(P<0.01)
训练给药组显著高于其他力竭组
与安静对照组相比无显著性差异。Ca2+-ATP酶活性在力竭运动后即刻也呈现下降趋势
除训练给药组外均显著低于安静对照组
而给药组和训练组又显著高于安静力竭组(P<0.05
P<0.01)
且呈上升趋势
但这3组间数据差异均无统计学意义。力竭运动后即刻
股四头肌中总ATP酶活性显著下降
但训练组和给药组均极显著高于安静力竭组(P<0.01)
其中训练给药组显著高于安静给药力竭组和训练力竭组(P<0.01)。 结论: 服用罗汉果叶黄酮可提高游泳至力竭后大鼠股四头肌Na+/K+-ATPase
Ca2+/Mg2+-ATPase及总ATPase活力
提示罗汉果叶黄酮对维持细胞膜内外的渗透压及跨膜电位平衡具有重要意义
同时还能维持细胞内外Ca2+/Mg2+的稳态
保持较高的能量供给
提高抗氧化能力
延缓运动疲劳的发生。
Objective:Through the establishment of high-intensity endurance training and exhaustive swimming damage model
to investigate the function of anti-fatigue
maintaining the osmotic pressure of cell membrane and the balance of transmembrane potential of Siraitia grosvenori Leaves Flavonoid. Method: Forty healthy male Sprague-Dawley rats (2-3 months old; body weight of (200±20) g were randomly divided into five groups (n=8): quiet control group
quiet exhaustive exercise group
quiet-administration exhaustive exercise group
training exhaustive exercise group and training-administration exhaustive exercise group. The rats in all drug treated groups were intragastrically administrated by S. grosvenori leaves flavonoid extract (20.0 g·L-1) at the dose of 10.0 mL·kg-1·d-1 (200 mg·kg-1)
while the rats in unadministrated groups were treated by physiological saline solution according to the same dose. The rats in each group were trained by 3% weight-bearing exhaustive swimming after four-week increasing load swimming training. Blood samples were collected when all rats were killed immediately by decapitation after the accurate records of exhaustive time to determin the relevant indicators of ATPase in quadriceps. Result: At the point of immediately after exhaustive exercise
the activity of Na+/K+-ATPase was extremely significantly decreased (P<0.01) in all the exhaustive exercise groups except the training-administration exhaustive exercise group. The activity of Na+/K+-ATPase was significantly higher in the training-administration exhaustive exercise group than that in other exhaustive exercise groups
but it was no significant difference compared to quiet control group. The activity of Ca2+ATPase was also decreased at the point of immediately after exhaustive exercise in all the exercise groups. Ca2+ATPase activity in training-administration exhaustive exercise group was significantly lower than that of quiet control group. While Ca2+ATPase activities in administration exhaustive exercise group and training exhaustive exercise group were significantly higher than that of quiet exhaustive exercise group (P<0.05
P<0.01)
Ca2+ATPase activities were appeared upward trend
though these data had no statistically significance. At the point of immediately after exhaustive exercise
the activity of total ATPase was significantly decreased
though the total ATPase in administration exhaustive exercise group and training exhaustive exercise group were significantly higher than that of quiet exhaustive exercise group (P<0.01)
and it in training-administration exhaustive exercise group was significantly higher than that of quiet-administration exhaustive exercise group and training exhaustive exercise group (P<0.01). Conclusion: Na+/K+-ATPase
Ca2+/Mg2+-ATPase and total ATPase in quadriceps of swimming exhaustive rats could increased by administration of S.grosvenori leaves flavonoid. This data indicated that Siraitia Grosvenori leaves flavonoid has important significance to maintain the osmotic pressure of cell membrane and the balance of transmembrane potential. And the S. grosvenori leaves flavonoid could also maintain the balance of Ca2+/Mg2+ to ensure higher energy supply
improve the capacity of anti-oxidant
and delay the onset of exercise-induced fatigue.
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