Creatine supplementation: Exploring the role of the creatine kinase/phosphocreatine system in human muscle

被引:27
作者
Hespel, P [1 ]
Op 't Eijnde, B
Derave, W
Richter, EA
机构
[1] Katholieke Univ Leuven, Fac Phys Educ & Physiotherapy, Exercise Physiol & Biomech Lab, Louvain, Belgium
[2] Univ Copenhagen, Inst Exercise & Sport Sci, Dept Human Physiol, Copenhagen Muscle Res Ctr, Copenhagen, Denmark
来源
CANADIAN JOURNAL OF APPLIED PHYSIOLOGY-REVUE CANADIENNE DE PHYSIOLOGIE APPLIQUEE | 2001年 / 26卷
关键词
exercise; skeletal muscle; phosphocreatine; muscle relaxation; muscle metabolism;
D O I
10.1139/h2001-045
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The effect of oral creatine supplementation on high-intensity exercise performance has been extensively studied over the past ten years and its ergogenic potential in young healthy subjects is now well documented. Recently, research has shifted from performance evaluation towards elucidating the mechanisms underlying enhanced muscle functional capacity, after creatine supplementation. In this review, we attempt to summarise recent advances in the understanding of potential mechanisms of action of creatine supplementation at the level of skeletal muscle cells, By increasing intracellular creatine content, oral creatine ingestion conceivably stimulates operation of the creatine kinase (CK)/phosphocreatine (PCr) system, which in turn facilitates muscle relaxation. Furthermore, evidence is accumulating to suggest that creatine supplementation can beneficially impact on muscle protein and glycogen synthesis. Thus, muscle hypertrophy and glycogen supercompensation are candidate factors to explain the ergogenic potential of creatine ingestion. Additional issues discussed in this review are the fibre-type specificity of muscle creatine metabolism, the identification of responders versus non-responders to creatine intake, and the scientific background concerning potential side effects of creatine supplementation.
引用
收藏
页码:S79 / S102
页数:24
相关论文
共 119 条
  • [1] Time course of changes in markers of myogenesis in overloaded rat skeletal muscles
    Adams, GR
    Haddad, F
    Baldwin, KM
    [J]. JOURNAL OF APPLIED PHYSIOLOGY, 1999, 87 (05) : 1705 - 1712
  • [2] ALSEVER R N, 1970, Endocrinology, V86, P332
  • [3] ELEVATED MUSCLE GLYCOGEN AND ANAEROBIC ENERGY-PRODUCTION DURING EXHAUSTIVE EXERCISE IN MAN
    BANGSBO, J
    GRAHAM, TE
    KIENS, B
    SALTIN, B
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 1992, 451 : 205 - 227
  • [4] HEMODYNAMIC ACTIONS OF INSULIN
    BARON, AD
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1994, 267 (02): : E187 - E202
  • [5] Barton-Davis ER, 1999, ACTA PHYSIOL SCAND, V167, P301
  • [6] Effects of oral creatine supplementation on muscular strength and body composition
    Becque, MD
    Lochmann, JD
    Melrose, DR
    [J]. MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2000, 32 (03) : 654 - 658
  • [7] Bermon S, 1998, ACTA PHYSIOL SCAND, V164, P147, DOI 10.1046/j.1365-201X.1998.00427.x
  • [8] BERTOCCI L A, 1992, Neurology, V42, P387
  • [9] BESSMAN SP, 1990, BIOCH EXERCISE, V7, P167
  • [10] Creatine ingestion favorably affects performance and muscle metabolism during maximal exercise in humans
    Casey, A
    ConstantinTeodosiu, D
    Howell, S
    Hultman, E
    Greenhaff, PL
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 1996, 271 (01): : E31 - E37