Hohtari H, Pakarinen A, Kauppila A
Acta Endocrinol (Copenh). 1987 Jan;114(1):41-6. doi: 10.1530/acta.0.1140041.
The effects of endurance training and season on the function of the anterior pituitary-thyroid axis were studied in 18 female runners and their 12 controls, and in 13 joggers and their 11 controls in Northern Finland, with a large seasonal difference in environmental factors. The serum concentrations of thyrotropin (TSH), thyroxine (T4), free thyroxine (fT4), triiodothyronine (T3), thyroxine binding globulin (TBG) and oestradiol (E2) were measured during one menstrual cycle in the light training season (autumn) and in the hard training season (spring). The responses of TSH to intravenous TRH stimulation were also measured in the luteal phase of the cycle during the hard training season. Endurance running did not affect the basal or TRH-stimulated serum TSH concentrations, while those of T4 and fT4 in runners were lowered in both seasons and that of T3 in the light training season in relation to control subjects. The serum concentrations of TBG were also significantly lower in runners than their controls in the luteal phase in both seasons. The effect of jogging on thyroid hormones was less pronounced. Serum concentrations of TSH, T4, fT4, T3 and TBG were generally slightly higher in spring than in autumn. Strenuous endurance training seems to have minor changes on the function of the thyroid gland. Depressed T4 levels in runners may rather be due to lowered TBG levels than due to direct effect of training. In spring the function of anterior pituitary-thyroid axis is more active than in autumn.
在环境因素存在巨大季节性差异的芬兰北部,对18名女性跑步运动员及其12名对照者,以及13名慢跑者及其11名对照者进行了耐力训练和季节对垂体前叶 - 甲状腺轴功能影响的研究。在轻训练季节(秋季)和高强度训练季节(春季)的一个月经周期内,测量促甲状腺激素(TSH)、甲状腺素(T4)、游离甲状腺素(fT4)、三碘甲状腺原氨酸(T3)、甲状腺素结合球蛋白(TBG)和雌二醇(E2)的血清浓度。在高强度训练季节的月经周期黄体期,还测量了TSH对静脉注射促甲状腺激素释放激素(TRH)刺激的反应。耐力跑不影响基础或TRH刺激后的血清TSH浓度,而与对照受试者相比,跑步运动员的T4和fT4在两个季节均降低,T3在轻训练季节降低。在两个季节的黄体期,跑步运动员的血清TBG浓度也显著低于其对照者。慢跑对甲状腺激素的影响不太明显。TSH、T4、fT4、T3和TBG的血清浓度一般在春季略高于秋季。剧烈的耐力训练似乎对甲状腺功能有轻微影响。跑步运动员T4水平降低可能更多是由于TBG水平降低,而非训练的直接影响。春季垂体前叶 - 甲状腺轴的功能比秋季更活跃。