6533b82cfe1ef96bd128f693
RESEARCH PRODUCT
Muscle enzyme adaptations to added load during training and nontraining hours in rats.
Veikko VihkoA. LeinonenC. BoscoHeikki RuskoJyrki Komulainensubject
Malemedicine.medical_specialtyPhysiologyPhysical exerciseGastrocnemius muscleEndurance trainingPhysiology (medical)Internal medicinePhysical Conditioning AnimalmedicineCitrate synthaseAnimalsSoleus musclebiologyChemistryMusclesRats Inbred StrainsAdaptation PhysiologicalRatsEndocrinologybiology.proteinPhysical EnduranceCreatine kinasemedicine.symptomGlycolysisOxidation-ReductionMuscle contractionPhosphofructokinaseMuscle Contractiondescription
The effects of added load (20% of body mass) on the selected enzyme activities of red and white quadriceps femoris (QF), soleus, and gastrocnemius muscles of rats were studied. The rats were divided into sedentary control (SC), sedentary control with added load (SC+AL), endurance training (ET), and endurance training with added load (ET+AL) groups (n = 10 rats/group). After 6 wk, the SC+AL group had 57% higher (P less than 0.001) beta-glucuronidase (beta-GU) activity and 24% lower (P less than 0.05) citrate synthase activity in white QF than SC. Citrate synthase activity was also decreased in red QF (P less than 0.05) after the added load was used during nontraining hours. The training with added load induced similar but more pronounced changes than normal endurance training, especially in white QF. The ET+AL group demonstrated higher citrate synthase activity in white QF (P less than 0.001) and gastrocnemius (P less than 0.01) and higher malate dehydrogenase activity (P less than 0.05) and beta-GU activity (P less than 0.001) in white QF than the ET group. ET+AL rats also had higher phosphofructokinase (P less than 0.01) and lower creatine kinase (P less than 0.001) activity in white QF than ET rats. In conclusion, the added load without training had minor adaptive influences on muscles. The added load during training hours seemed to be an effective means of influencing the activation and adaptation in muscles that contain fast glycolytic fibers.
year | journal | country | edition | language |
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1991-02-01 | Journal of applied physiology (Bethesda, Md. : 1985) |