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骨骼肌肉碱水平的大幅变化未能改变运动大鼠的能量代谢。

Large variations in skeletal muscle carnitine level fail to modify energy metabolism in exercising rats.

作者信息

Simi B, Mayet M H, Sempore B, Favier R J

机构信息

URA 1341 CNRS, Laboratoire de Physiologie, Faculté de Médecine Lyon Grange-Blanche, France.

出版信息

Comp Biochem Physiol A Comp Physiol. 1990;97(4):543-9. doi: 10.1016/0300-9629(90)90125-c.

Abstract
  1. The importance of carnitine status in energy metabolism during exercise was studied in experimentally carnitine-depleted or supplemented rats. 2. Muscle carnitine concentration can be decreased by 40% with D-carnitine and increased by 40% with L-carnitine supplementation. 3. In spite of large variation of carnitine content, neither the exercising capacity nor the rate of muscle or liver glycogenolysis were modified during submaximal exercise. 4. The increased lipid metabolism induced by exercise can be adequately supported by endogenous levels of tissue carnitine. 5. Before any impairment in energy metabolism during exercise can be demonstrated, carnitine concentration has to be reduced to a level close to that measured with primary carnitine deficiency, i.e. less than 20 mumol/l of plasma.
摘要
  1. 在实验性地使大鼠肉碱缺乏或补充肉碱的情况下,研究了运动期间肉碱状态在能量代谢中的重要性。2. 用D-肉碱可使肌肉肉碱浓度降低40%,补充L-肉碱则可使其增加40%。3. 尽管肉碱含量存在很大差异,但在次最大运动期间,运动能力以及肌肉或肝脏糖原分解速率均未改变。4. 运动诱导的脂质代谢增加可由组织肉碱的内源性水平充分支持。5. 在能够证明运动期间能量代谢出现任何损害之前,肉碱浓度必须降低到接近原发性肉碱缺乏所测得的水平,即血浆中低于20微摩尔/升。

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