GLYCOGEN RESYNTHESIS IN HUMAN MUSCLE-FIBER TYPES FOLLOWING EXERCISE-INDUCED GLYCOGEN DEPLETION

被引:51
作者
CASEY, A
SHORT, AH
HULTMAN, E
GREENHAFF, PL
机构
[1] UNIV NOTTINGHAM,QUEENS MED CTR,SCH MED,DEPT PHYSIOL & PHARMACOL,NOTTINGHAM NG7 2UH,ENGLAND
[2] HUDDINGE UNIV HOSP,KAROLINSKA INST,DEPT CLIN CHEM,S-14186 HUDDINGE,SWEDEN
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1995年 / 483卷 / 01期
关键词
D O I
10.1113/jphysiol.1995.sp020583
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Studies investigating muscle glycogen resynthesis in man have usually examined mixed-fibred biopsies or have used histochemical methods to estimate single fibre resynthesis. Since the accuracy of the latter is open to debate, this study investigated glycogen resynthesis in type I and II fibres using biochemical methods of analysis. 2. Seven subjects performed one-legged cycling exercise to exhaustion. During the initial 2 h (kg body mass (BM))(-1), and a high carbohydrate diet thereafter. Muscle biopsy samples were obtained from both legs at exhaustion, and from the exercised leg after 3, 10 and 24 h of recovery. 3. In the initial 3 h of recovery, there was a 25 +/- 8% higher rate of resynthesis in type I compared with type II fibres (41 +/- 3 and 31 +/- 4 mmol glucosyl units (kg dry mass (DM))(-1) h(-1), respectively; P < 0.05). Between 3 and 10 h of recovery, resynthesis in type I fibres declined by 60 +/- 13% to 15 +/- 4 mmol glucosyl units (kg DM)(-1) h(-1) (P < 0.01), whilst the rate in type II fibres was maintained. Good agreement was found when relating the mixed-fibred muscle glycogen concentration to the mean concentration found in type I and type II fibres (r = 0.96). 4. A discrepancy was found to exist with histochemically derived data reported in the literature. The higher initial glycogen resynthesis rate in type I fibres may be attributable to fibre-type differences in glucose uptake and disposal. Thereafter the fibre glycogen concentration appears to exert a negative feedback on further resynthesis.
引用
收藏
页码:265 / 271
页数:7
相关论文
共 32 条
[1]   A STUDY OF GLYCOGEN METABOLISM DURING EXERCISE IN MAN [J].
BERGSTROM, J ;
HULTMAN, E .
SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION, 1967, 19 (03) :218-+
[2]   MUSCLE GLYCOGEN SYNTHESIS AFTER EXERCISE - AN ENHANCING FACTOR LOCALIZED TO MUSCLE CELLS IN MAN [J].
BERGSTROM, J ;
HULTMAN, E .
NATURE, 1966, 210 (5033) :309-+
[3]  
BERGSTROM JONAS, 1962, SCAND JOUR CLIN AND LAB INVEST, V14, P7
[4]   INSULIN BINDING AND GLUCOSE-UPTAKE DIFFERENCES IN RODENT SKELETAL-MUSCLES [J].
BONEN, A ;
TAN, MH ;
WATSONWRIGHT, WM .
DIABETES, 1981, 30 (08) :702-704
[5]  
BORG G., 1967, ACTA MED SCAND SUPPL, V472, P194
[6]   ADENINE-NUCLEOTIDE DEGRADATION IN HUMAN SKELETAL-MUSCLE DURING PROLONGED EXERCISE [J].
BROBERG, S ;
SAHLIN, K .
JOURNAL OF APPLIED PHYSIOLOGY, 1989, 67 (01) :116-122
[7]   MUSCLE FIBER TYPES - HOW MANY AND WHAT KIND [J].
BROOKE, MH ;
KAISER, KK .
ARCHIVES OF NEUROLOGY, 1970, 23 (04) :369-&
[9]  
Conlee R. K., 1978, AM J PHYSIOL, V235, pR145
[10]   THE ROLE OF DIETARY CARBOHYDRATES IN MUSCLE GLYCOGEN RESYNTHESIS AFTER STRENUOUS RUNNING [J].
COSTILL, DL ;
SHERMAN, WM ;
FINK, WJ ;
MARESH, C ;
WITTEN, M ;
MILLER, JM .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 1981, 34 (09) :1831-1836