GLYCOGEN REPLETION AND EXERCISE ENDURANCE IN RATS ADAPTED TO A HIGH-FAT DIET

被引:44
作者
CONLEE, RK
HAMMER, RL
WINDER, WW
BRACKEN, ML
NELSON, AG
BARNETT, DW
机构
[1] Exercise Biochemistry Laboratory, Brigham Young University, Provo, UT
来源
METABOLISM-CLINICAL AND EXPERIMENTAL | 1990年 / 39卷 / 03期
关键词
D O I
10.1016/0026-0495(90)90049-I
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
It is well accepted that exercise endurance is directly related to the amount of carbohydrate stored in muscle and that a low carbohydrate diet reduces glycogen storage and exercise performance. However, more recent evidence has shown that when the organism adapts to a high fat diet endurance is not hindered. The present study was designed to test that claim and to further determine if animals adapted to a high fat diet could recover from exhausting exercise and exercise again in spite of carbohydrate deprivation. Fat-adapted (3 to 4 weeks, 78% fat, 1% carbohydrates) rats (FAT) ran (28 m/min, 10% grade) as long as carbohydrate-fed (69% carbohydrates) animals (CHO) (115 v 109 minutes, respectively) in spite of lower pre-exercise glycogen levels in red vastus muscle (36 v 54 μmol/g) and liver (164 v 313 μmol/g) in the FAT group. Following 72 hours of recovery on the FAT diet, glycogen in muscle had replenished to 42 μmol/g (v 52 for CHO) and liver glycogen to 238 μmol/g (v 335 for CHO). The animals were run to exhaustion a second time and run times were again similar (122 v 132 minutes FAT v CHO). When diets were switched after run 1, FAT-adapted animals, which received carbohydrates for 72 hours, restored muscle and liver glycogen (48 and 343 μmol/g, respectively) and then ran longer (144 minutes) than CHO-adapted animals (104 minutes) that ate fat for 72 hours and that had reduced glycogen repletion. We conclude that, in contrast to the classic CHO loading studies in humans that involved acute (72 hours) fat feedings and subsequently reduced endurance, rats adapted to a high fat diet do not have a decrease in endurance capacity even after recovery from previous exhausting work bouts. Part of this adaptation may involve the increased storage and utilization of intramuscular triglycerides (TG) as observed in the present experiment. © 1990.
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页码:289 / 294
页数:6
相关论文
共 26 条
[1]   MUSCLE GLYCOGEN AND MUSCLE ELECTROLYTES DURING PROLONGED PHYSICAL EXERCISE [J].
AHLBORG, B ;
BERGSTRO.J ;
EKELUND, LG ;
HULTMAN, E .
ACTA PHYSIOLOGICA SCANDINAVICA, 1967, 70 (02) :129-&
[2]   EFFECT OF FASTING ON MYOCARDIAL SUBSTRATES IN MALE AND FEMALE RATS [J].
ARNALL, DA ;
PALMER, WK ;
MILLER, WC ;
OSCAI, LB .
AMERICAN JOURNAL OF PHYSIOLOGY, 1988, 254 (04) :C560-C563
[3]  
Bergmeyer H.U., 1974, METHOD ENZYMAT AN, VVol. 3., P1196
[4]   DIET MUSCLE GLYCOGEN AND PHYSICAL PERFORMANCE [J].
BERGSTROM, J ;
HERMANSEN, L ;
HULTMAN, E ;
SALTIN, B .
ACTA PHYSIOLOGICA SCANDINAVICA, 1967, 71 (2-3) :140-+
[5]   MUSCLE AND LIVER-GLYCOGEN CONTENT - DIURNAL-VARIATION AND ENDURANCE [J].
CLARK, JH ;
CONLEE, RK .
JOURNAL OF APPLIED PHYSIOLOGY, 1979, 47 (02) :425-428
[6]  
Conlee R K, 1987, Exerc Sport Sci Rev, V15, P1
[7]   SKELETAL-MUSCLE GLYCOGEN CONTENT - DIURNAL-VARIATION AND EFFECTS OF FASTING [J].
CONLEE, RK ;
RENNIE, MJ ;
WINDER, WW .
AMERICAN JOURNAL OF PHYSIOLOGY, 1976, 231 (02) :614-618
[8]   REGULATION OF GLYCOGEN RESYNTHESIS IN MUSCLES OF RATS FOLLOWING EXERCISE [J].
CONLEE, RK ;
HICKSON, RC ;
WINDER, WW ;
HAGBERG, JM ;
HOLLOSZY, JO .
AMERICAN JOURNAL OF PHYSIOLOGY, 1978, 235 (03) :R145-R150
[9]   EFFECTS OF ELEVATED PLASMA FFA AND INSULIN ON MUSCLE GLYCOGEN USAGE DURING EXERCISE [J].
COSTILL, DL ;
COYLE, E ;
DALSKY, G ;
EVANS, W ;
FINK, W ;
HOOPES, D .
JOURNAL OF APPLIED PHYSIOLOGY, 1977, 43 (04) :695-699
[10]   PREPARATION AND DETERMINATION OF HIGHER FATTY ACIDS [J].
ENTENMAN, C .
METHODS IN ENZYMOLOGY, 1957, 3 :317-328