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左旋肉碱负荷对耐力运动员有氧和无氧运动表现的影响。

Effects of L-carnitine loading on the aerobic and anaerobic performance of endurance athletes.

作者信息

Marconi C, Sassi G, Carpinelli A, Cerretelli P

出版信息

Eur J Appl Physiol Occup Physiol. 1985;54(2):131-5. doi: 10.1007/BF02335919.

DOI:10.1007/BF02335919
PMID:4043038
Abstract

L-Carnitine (L-C), a well known physiological carrier across the inner mitochondrial membrane of activated long chain fatty acids and acceptor of acyl groups from acyl-CoA, has been recently synthesised industrially. This has made it possible to study the effects of L-C loading (4 g X d(-1) by mouth over a period of 2 weeks) on the aerobic and anaerobic performance of 6 long distance competitive walkers. As a result of the treatment: 1) mean total, free and esterified serum L-C both at rest and shortly after completing a 120 min walk at about 65% of the individual maximal aerobic power (VO2max) were significantly increased; 2) VO2max increased 6%, from 54.5 +/- 3.7 (S.D.) to 57.8 +/- 4.7 m1O2 X kg(-1) X min(-1) (P less than 0.02); 3) blood lactate concentration (Lab) as a consequence of short bouts repeated exercise (series of 10, 15 and 20 jumps off both feet on a force platform) was unchanged; 4) heart rate, pulmonary ventilation, oxygen consumption, and respiratory quotient in the same conditions as for 1) were unchanged. It is concluded that, in trained athletes, as a consequence of L-C loading VO2max is slightly but significantly raised, probably as a result of an activation of substrate flow through the TCA cycle, whereas the lipid contribution to metabolism in prolonged submaximal exercise remains unchanged.

摘要

左旋肉碱(L-C)是一种众所周知的生理载体,可携带活化的长链脂肪酸穿过线粒体内膜,也是酰基辅酶A的酰基受体,最近已实现工业化生产。这使得研究L-C负荷(连续2周每天口服4克)对6名长跑竞走运动员有氧和无氧运动能力的影响成为可能。治疗结果如下:1)在静息状态以及以约65%的个人最大有氧功率(VO2max)完成120分钟步行后不久,血清总L-C、游离L-C和酯化L-C的平均值均显著增加;2)VO2max增加了6%,从54.5±3.7(标准差)增至57.8±4.7毫升氧气×千克-1×分钟-1(P<0.02);3)短时间重复运动(在测力平台上双脚进行10次、15次和20次跳跃)后血乳酸浓度(Lab)未发生变化;4)在与1)相同的条件下,心率、肺通气、耗氧量和呼吸商均未改变。得出的结论是,在训练有素的运动员中,L-C负荷可使VO2max略有但显著提高,这可能是由于三羧酸循环底物流量的激活,而在长时间次最大运动中脂质对代谢的贡献保持不变。

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