首页> 外文期刊>Journal of Endocrinological Investigation: Official Journal of the Italian Society of Endocrinology >Effect of resistance exercise (body building) training on serum leptin levels in young men. Implications for relationship between body mass index and serum leptin.
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Effect of resistance exercise (body building) training on serum leptin levels in young men. Implications for relationship between body mass index and serum leptin.

机译:抵抗运动(健美运动)训练对年轻男子血清瘦素水平的影响。体重指数与血清瘦素之间关系的暗示。

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Available data about the influence of exercise on leptin level are controversial, and there are no studies concerning leptin levels in trained men with low fat mass plus large increase of muscle. 65 healthy young male matched for age were separated in three groups. 1) 25 non-professional body builders; 2) 21 mild overweight sedentary subjects; 3) 19 normal weight sedentary controls. Body composition was determined by bioelectrical impedance. Serum leptin was measured in duplicate by RIA. Statistics: Student's t and Pearson's test. Athletes showed similar BMI than overweight subjects: 26.98+/-0.49 vs 27.12+/-0.41 but lower fat mass: 12.53+/-0.96 vs 16.16+/-1.01 % (p=0.0064) and lower leptin: 4.66+/-0.51 vs 7.31+/-0.76 microg/l (p=0.014). Athletes showed higher BMI than controls: 26.98+/-0.49 vs 23.08+/-0.30 (p<0.0001) but similar fat mass: 12.53+/-0.96 vs 12.48+/-0.73% and leptin: 4.66+/-0.51 vs 4.79+0.58 microg/l. Overweight subjects showed higher BMI than controls: 27.12+/-0.41 vs 23.08+/-0.30 (p<0.0001), higher fat mass: 16.16+/-1.01 vs 12.48+/-0.73% (p=0.0064) and higher leptin: 7.31+/-0.76 vs 4.79+/-0.589 microg/l (p=0.014). When leptin was calculated by fat mass no differences were observed between the three groups. There was a significant correlation between leptin and fat mass in all groups. Leptin correlated with BMI in overweight subjects (r=0.438, p=0.0463), but this correlation was not observed either in athletes or in controls. In conclusion 1) regardless of the high BMI characteristic of body builders, no correlation was observed with leptin; 2) trained state induced by resistance exercise does not influence leptin production independently of variations in body composition.
机译:关于锻炼对瘦素水平影响的可用数据尚有争议,目前尚无有关脂肪含量低且肌肉大量增加的受过训练的男性瘦素水平的研究。将65个年龄相匹配的健康年轻男性分为三组。 1)25名非专业的健美运动员; 2)21名轻度超重久坐的受试者; 3)19名正常体重久坐对照者。身体成分由生物电阻抗确定。通过RIA一式两份测量血清瘦素。统计数据:学生t和皮尔森检验。运动员的BMI与超重受试者相似:26.98 +/- 0.49与27.12 +/- 0.41,但较低的脂肪量:12.53 +/- 0.96与16.16 +/- 1.01%(p = 0.0064)和较低的瘦素:4.66 +/- 0.51 vs 7.31 +/- 0.76微克/升(p = 0.014)。运动员的BMI高于对照组:26.98 +/- 0.49 vs 23.08 +/- 0.30(p <0.0001),但相似的脂肪量:12.53 +/- 0.96 vs 12.48 +/- 0.73%和瘦素:4.66 +/- 0.51 vs 4.79 +0.58微克/升。超重受试者的BMI高于对照组:27.12 +/- 0.41 vs 23.08 +/- 0.30(p <0.0001),脂肪质量更高:16.16 +/- 1.01 vs 12.48 +/- 0.73%(p = 0.0064)和瘦素更高: 7.31 +/- 0.76和4.79 +/- 0.589 microg / l(p = 0.014)。当通过脂肪量计算瘦素时,三组之间未观察到差异。在所有组中,瘦素和脂肪量之间存在显着相关性。瘦素与超重受试者的BMI相关(r = 0.438,p = 0.0463),但在运动员或对照组中均未观察到这种相关性。结论1)不管健美运动员的BMI高如何,瘦素都没有相关性。 2)由抵抗运动诱发的训练状态不会独立于身体组成的变化而影响瘦素的产生。

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