No Effect of Acute Balenine Supplementation on Maximal and Submaximal Exercise Performance in Recreational Cyclists.

IF 3 3区 医学 Q2 NUTRITION & DIETETICS
Sarah de Jager, Stefaan Van Damme, Siegrid De Baere, Siska Croubels, Ralf Jäger, Martin Purpura, Eline Lievens, Jan G Bourgois, Wim Derave
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引用次数: 2

Abstract

Carnosine (β-alanyl-L-histidine) and its methylated analogues anserine and balenine are highly concentrated endogenous dipeptides in mammalian skeletal muscle that are implicated in exercise performance. Balenine has a much better bioavailability and stability in human circulation upon acute ingestion, compared to carnosine and anserine. Therefore, ergogenic effects observed with acute carnosine and anserine supplementation may be even more pronounced with balenine. This study investigated whether acute balenine supplementation improves physical performance in four maximal and submaximal exercise modalities. A total of 20 healthy, active volunteers (14 males; six females) performed cycling sprints, maximal isometric contractions, a 4-km TT and 20-km TT following either preexercise placebo or 10 mg/kg of balenine ingestion. Physical, as well as mental performance, along with acid-base balance and glucose concentration were assessed. Balenine was unable to augment peak power (p = .3553), peak torque (p = .3169), time to complete the 4 km (p = .8566), nor 20 km time trial (p = .2660). None of the performances were correlated with plasma balenine or CN1 enzyme activity. In addition, no effect on pH, bicarbonate, and lactate was observed. Also, the supplement did not affect mental performance. In contrast, glucose remained higher during and after the 20 km time trial following balenine ingestion. In conclusion, these results overall indicate that the functionality of balenine does not fully resemble that of carnosine and anserine, since it was unable to elicit performance improvements with similar and even higher plasma concentrations.

急性补充Balenine对休闲骑自行车者最大和次最大运动表现无影响。
肌肽(β-丙氨酰- l-组氨酸)及其甲基化类似物雁氨酸和羊氨酸是哺乳动物骨骼肌中高度浓缩的内源性二肽,与运动表现有关。在急性摄入时,与肌肽和鹅胺相比,丙烯在人体循环中具有更好的生物利用度和稳定性。因此,在急性肌肽和鹅胺补充中观察到的自适应效应可能在balenine补充中更为明显。这项研究调查了急性补充balenine是否能改善四种最大和次最大运动模式下的身体表现。共有20名健康活跃的志愿者(14名男性;6名女性)在运动前服用安慰剂或摄入10 mg/kg的balenine后,分别进行自行车短跑、最大等长收缩、4公里TT和20公里TT。评估了身体和精神表现,以及酸碱平衡和葡萄糖浓度。Balenine无法增加峰值功率(p = .3553),峰值扭矩(p = .3169),完成4公里的时间(p = .8566),也无法增加20公里的计时赛(p = .2660)。这些性能均与血浆丙烯氨酸或CN1酶活性无关。此外,对pH、碳酸氢盐和乳酸盐没有影响。此外,这种补充剂也不会影响智力表现。相比之下,在摄入丙烯后的20公里计时赛期间和之后,葡萄糖仍然较高。总之,这些结果总体上表明,balenine的功能并不完全类似于肌肽和雁胺,因为它不能在相似甚至更高的血浆浓度下引起性能改善。
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来源期刊
CiteScore
5.00
自引率
8.00%
发文量
50
审稿时长
6-12 weeks
期刊介绍: The International Journal of Sport Nutrition and Exercise Metabolism (IJSNEM) publishes original scientific investigations and scholarly reviews offering new insights into sport nutrition and exercise metabolism, as well as articles focusing on the application of the principles of biochemistry, physiology, and nutrition to sport and exercise. The journal also offers editorials, digests of related articles from other fields, research notes, and reviews of books, videos, and other media releases. To subscribe to either the print or e-version of IJSNEM, press the Subscribe or Renew button at the top of your screen.
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