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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Effect of fat free mass on serum and plasma BDNF concentrations during exercise and recovery in healthy young men
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Effect of fat free mass on serum and plasma BDNF concentrations during exercise and recovery in healthy young men

机译:健康青年男子运动和恢复期间无脂脂肪对血清和血浆BDNF浓度的影响

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摘要

Exercise results in release of brain derived neurotrophic factor into the circulation; however, little is known about the changes in serum and plasma brain derived neurotrophic factor concentrations and factors influencing brain derived neurotrophic factor during exercise and recovery. Serum (n= 23) and plasma (n= 10) brain derived neurotrophic factor concentrations were measured in healthy young men at rest, during steady-rate and after exercise to determine the maximum aerobic power. A two-way analysis of variance was used to investigate brain derived neurotrophic factor levels in blood during exercise and recovery, with one between-subject factor (a median split on: age, height, body mass, fat free mass, body mass index and aerobic fitness), and one within-subject factor (time). Serum brain derived neurotrophic factor concentrations increased in response to exercise and declined rapidly in recovery. Plasma brain derived neurotrophic factor had a greater proportional increase relative to exhaustive exercise compared with serum brain derived neurotrophic factor and was slower to return to near baseline values. There was a significant group-by-time interaction indicating a greater release and faster recovery for serum brain derived neurotrophic factor in high- compared with low-fat free mass individuals.
机译:运动会导致脑源性神经营养因子释放到循环系统中。然而,在运动和恢复过程中,血清和血浆脑源性神经营养因子浓度的变化以及影响脑源性神经营养因子的因素鲜为人知。在健康的年轻男性中测量其静息,稳态和运动后的血清(n = 23)和血浆(n = 10)的神经营养因子浓度,以确定最大有氧能力。使用方差的双向分析方法研究运动和恢复期间血液中脑源性神经营养因子水平,其中一个受试者间因子(中位数分为:年龄,身高,体重,无脂肪体重,体重指数和有氧健身度)和一个受试者内因素(时间)。血清脑源性神经营养因子浓度响应运动而增加,而恢复后迅速下降。与力竭运动相比,血浆脑源性神经营养因子与血清脑源性神经营养因子的比例增加更大,并且恢复至接近基线值的速度较慢。与低脂无脂肪的个体相比,高剂量组的时间之间存在显着的相互作用,表明高剂量血清脑源性神经营养因子的释放和恢复更快。

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