上海体育学院学报
上海體育學院學報
상해체육학원학보
Journal of Shanghai Physical Education Institute
2013年
3期
60~63
,共null页
刘无逸 钱鹤 王磊 李海
劉無逸 錢鶴 王磊 李海
류무일 전학 왕뢰 리해
大鼠 过度训练 肌糖原 自由基 线粒体
大鼠 過度訓練 肌糖原 自由基 線粒體
대서 과도훈련 기당원 자유기 선립체
rat; overtraining; glycogen; free radical ; mitochondria
目的:观察大鼠在过度训练状态下骨骼肌糖代谢的变化,探讨过度训练对糖代谢的影响。方法:将SD大鼠随机分为对照组(7只,Con)、运动组(8只,Mtr)和过度训练组(9只,Otr),进行9周跑台训练,其中Otr组后3周为力竭性运动。运动后分别测定骨骼肌糖原含量,LDH、PK、SDH、SOD酶的活性及MDA浓度,电镜观察肌组织的变化。结果:Otr组肌糖原含量较Mtr组降低,各种酶活性受到不同程度的抑制,MDA浓度升高,线粒体水肿,呈空泡状。结论:大鼠连续力竭性运动所致过度训练存在骨骼肌糖代谢功能紊乱,其可能与力竭性运动引起的自由基损害有关。
目的:觀察大鼠在過度訓練狀態下骨骼肌糖代謝的變化,探討過度訓練對糖代謝的影響。方法:將SD大鼠隨機分為對照組(7隻,Con)、運動組(8隻,Mtr)和過度訓練組(9隻,Otr),進行9週跑檯訓練,其中Otr組後3週為力竭性運動。運動後分彆測定骨骼肌糖原含量,LDH、PK、SDH、SOD酶的活性及MDA濃度,電鏡觀察肌組織的變化。結果:Otr組肌糖原含量較Mtr組降低,各種酶活性受到不同程度的抑製,MDA濃度升高,線粒體水腫,呈空泡狀。結論:大鼠連續力竭性運動所緻過度訓練存在骨骼肌糖代謝功能紊亂,其可能與力竭性運動引起的自由基損害有關。
목적:관찰대서재과도훈련상태하골격기당대사적변화,탐토과도훈련대당대사적영향。방법:장SD대서수궤분위대조조(7지,Con)、운동조(8지,Mtr)화과도훈련조(9지,Otr),진행9주포태훈련,기중Otr조후3주위력갈성운동。운동후분별측정골격기당원함량,LDH、PK、SDH、SOD매적활성급MDA농도,전경관찰기조직적변화。결과:Otr조기당원함량교Mtr조강저,각충매활성수도불동정도적억제,MDA농도승고,선립체수종,정공포상。결론:대서련속력갈성운동소치과도훈련존재골격기당대사공능문란,기가능여력갈성운동인기적자유기손해유관。
Objectives: It is to observe the changes in glucose metabolism of skeletal muscle in rat after overtraining and explore the effects of overtraining on glucose metabolism. Methods: SD rats were randomly divided into group Con (7, sedentary control), group Mtr (8, moderate intensity training) and group Otr (9, over training). Both training groups were doing 9-week treadmill training. Skeletal muscle glycogen levels, LDH, PK, SHD, SOD activity and MDA concentrations were determined and morphological changes of muscular tissue were observed by electron microscopy after the 9-week training. Results: Muscle glycogen levels in group Otr were lower compared with that in group Mtr. A variety of enzymatic activity was subjected to varying degrees of inhibition. MDA concentrations increased, and morphology of mitochondria was swelling to be vacuoles. Conclusions : The dysfunction of glucose metabolism in rat skeletal muscle after overtraining is probably owing to the free radical impairment from the exhaustive exercise.