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70%VO_2max疲劳运动和口服不饱和脂肪酸对血清雄激素的影响 被引量:11

The Influence of 7O%VO_2max Intensity Fatigue Exercises and Unsaturated Free Fatty Acids Supplement on Serum Androgen
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摘要 目的和方法:以8名健康男性受试者为实验对象,以中等强度(70%VO-2max)跑台耐力运动至疲劳为运动模型,观察中等强度一次长时间疲劳性运动对雄激素分泌活动的影响,并探讨口服不饱和脂肪酸对疲劳运动时血清雄激素水平的影响。结果:一次长时间疲劳性运动后,血清总睾酮(totaltestosterone,TT)和游离睾酮(freetestosterone,FT)水平明显下降;服用亚油酸(linoleicacid,LA)运动至疲劳后,FT水平增加,较未服用LA组FT水平有显著性差异。结论:一次长时间疲劳运动导致雄激素水平及其生物活性的降低,而不饱和脂肪酸可能影响血清中FT水平。不饱和脂肪酸可能通过改变运动后内源性雄激素的分布状态,改变疲劳运动后低水平的雄激素活性状态,对机体运动能力的提高和疲劳的恢复具有生理学的意义。 Male subjects running in treadmill at 70% VO-2max intensity until fatigue were applied as experimental model. After running, we determined the concentration of serum total testosterone (TT, free testosterone (FT), we also determined the changes of these indices after administration of exogenous unsaturated free fatty acids (UFFAs). Results Serum TT and FT level decreases significantly after exercise; the serum FT concentration increases after UFFAs supplement and there is a significant difference compared with the contwl. Conclusion The results show that not only androgen level but also its biological activity decreases significantly after fatigue exercises. It is also suggested that UFFAs has an influence on the level of serum FT. As a result, it might modulate the low androgen level after fatigue exercises by altering the distribution of endogenous androgen, and has an important effect on body performance and fatigue recovery.
出处 《中国运动医学杂志》 CAS CSCD 北大核心 2002年第1期30-32,共3页 Chinese Journal of Sports Medicine
关键词 运动性疲劳 雄激素 不饱和脂肪酸 生理学 exercise-induced fatigue, androgen, unsaturated free fatty acids
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  • 1[1]Dessypris A, Kuoppasalmi K, Adlercreutz H, et al.Plasma cortisol, testosterone, androstenedione andluteinizing hormone (LH) in a non-competitive marathonrun. J Steroid Biochem, 1976, 7: 33-37. 被引量:1
  • 2[2]Fellmann H. Effects of endurance training on androgenicresponses to exercise in man. Int J Sports Med, 1985, 6:215-219. 被引量:1
  • 3[3]Anderson DC. Sex hormone-binding globulin. ClinEndocrinol, 1974, 3: 69-96. 被引量:1
  • 4[4]Martin ME, Vranckx R, Benassayag C, et al.Modifications of the properties of human sex steroidbinding protein by non-esterified fatty acids. J BiolChem, 1986, 261: 2956-2959. 被引量:1
  • 5[5]Umstot ES, Andersen RN. Nonsteroidal substances thataffect serum free testosterone. J Steroid Biochem, 1986,46: 2606-2609. 被引量:1
  • 6[6]Kujala UM, Alen M, Huhtaniemi ZT. Gonadotrophinreleasing hormone and testicular endocrine functions aresuppressed during acute prolonged physical exercise. ClinEndocrinol, 1990, 33: 219-225. 被引量:1
  • 7[7]Pugeat MM, Dunn JF, Nisula BC. Transport of steroidhormone: Interaction of 70 drugs with testosterone-binding globulin and cortisol-bindng globulin in humanplasma. J Clin Endocrinol Metab, 1981, 53(1): 69-75. 被引量:1

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