Spiering Barry A, Kraemer William J, Vingren Jakob L, Ratamess Nicholas A, Anderson Jeffrey M, Armstrong Lawrence E, Nindl Bradley C, Volek Jeff S, Häkkinen Keijo, Maresh Carl M
Department of Kinesiology, University of Connecticut, 2095 Hillside Road, Storrs, CT 06269, USA.
J Steroid Biochem Mol Biol. 2009 Apr;114(3-5):195-9. doi: 10.1016/j.jsbmb.2009.02.005. Epub 2009 Feb 21.
The purpose of this study was to determine the influence of endogenous circulating testosterone (T) on muscle androgen receptor (AR) responses to acute resistance exercise (RE). Six healthy men (26+/-4 years; 176+/-5 cm; 75.8+/-11.4 kg) performed a knee extension exercise protocol on two occasions separated by 1-3 weeks. Rest preceded one trial (i.e., control [CON] trial) and a high-volume upper-body RE protocol designed to increase circulating T preceded the other trial (i.e., high T [HT] trial). Serial blood samples were obtained throughout each trial to determine circulating T concentrations. Biopsies of the vastus lateralis were obtained pre-RE (REST), 10-min post-RE (+10), and 180-min post-RE (+180) to determine muscle AR content. Circulating T concentrations remained stable during CON. Alternately, HT significantly (p< or =0.05) increased T concentrations above resting values (+16%). Testosterone area-under-the-time curve during HT exceeded CON by 14%. AR content remained stable from REST to +10 in both trials. Compared to the corresponding +10 value, muscle AR content at +180 tended to decrease during CON (-33%; p=0.10) but remained stable during HT (+40%; p=0.17). Muscle AR content at +180 during the HT trial exceeded the corresponding CON value. In conclusion, acute elevations in circulating T potentiated muscle AR content following RE.
本研究的目的是确定内源性循环睾酮(T)对肌肉雄激素受体(AR)对急性抗阻运动(RE)反应的影响。六名健康男性(26±4岁;身高176±5厘米;体重75.8±11.4千克)分两次进行膝关节伸展运动方案,两次运动间隔1 - 3周。一次试验前为休息状态(即对照[CON]试验),另一次试验前为旨在提高循环T水平的高容量上身抗阻运动方案(即高T[HT]试验)。在每次试验过程中采集系列血样以测定循环T浓度。在CON试验期间,循环T浓度保持稳定。相比之下,HT试验使T浓度显著(p≤0.05)高于静息值(升高16%)。HT试验期间睾酮的时间曲线下面积比CON试验高14%。在两次试验中,从休息状态到运动后10分钟(+10),AR含量均保持稳定。与相应的运动后10分钟的值相比,在CON试验中,运动后180分钟(+180)时肌肉AR含量趋于下降(-33%;p = 0.10),但在HT试验中保持稳定(+40%;p = 0.17)。HT试验中运动后180分钟时的肌肉AR含量超过了相应的CON试验值。总之,循环T的急性升高增强了抗阻运动后肌肉AR的含量。