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Production of interleukin-6 in contracting human skeletal muscles can account for the exercise-induced increase in plasma interleukin-6

机译:收缩人体骨骼肌中白细胞介素6的产生可以解释运动引起的血浆白细胞介素6的增加

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摘要

Plasma interleukin (IL)-6 concentration is increased with exercise and it has been demonstrated that contracting muscles can produce IL- The question addressed in the present study was whether the IL-6 production by contracting skeletal muscle is of such a magnitude that it can account for the IL-6 accumulating in the blood.This was studied in six healthy males, who performed one-legged dynamic knee extensor exercise for 5 h at 25 W, which represented 40% of peak power output (Wmax). Arterial-femoral venous (a-fv) differences over the exercising and the resting leg were obtained before and every hour during the exercise. Leg blood flow was measured in parallel by the ultrasound Doppler technique. IL-6 was measured by enzyme-linked immunosorbent assay (ELISA).Arterial plasma concentrations for IL-6 increased 19-fold compared to rest. The a-fv difference for IL-6 over the exercising leg followed the same pattern as did the net IL-6 release. Over the resting leg, there was no significant a-fv difference or net IL-6 release. The work was produced by 2.5 kg of active muscle, which means that during the last 2 h of exercise, the median IL-6 production was 6.8 ng min−1 (kg active muscle)−1 (range, 3.96-9.69 ng min−1 kg−1).The net IL-6 release from the muscle over the last 2 h of exercise was 17-fold higher than the elevation in arterial IL-6 concentration and at 5 h of exercise the net release during 1 min was half of the IL-6 content in the plasma. This indicates a very high turnover of IL-6 during muscular exercise. We suggest that IL-6 produced by skeletal contracting muscle contributes to the maintenance of glucose homeostasis during prolonged exercise.
机译:血浆白细胞介素(IL)-6的浓度会随着运动而增加,并且已经证明收缩肌肉可以产生IL-。本研究要解决的问题是骨骼肌收缩产生的IL-6的程度是否足以六名健康男性进行了研究,这些男性在25 W下进行了5个小时的单腿动态膝盖伸肌运动,这代表了峰值功率输出(Wmax)的40%,这是对六名健康男性的研究。在锻炼之前和锻炼期间的每一小时,均获得锻炼和休息腿的动脉-股静脉(a-fv)差异。通过超声多普勒技术并行测量腿部血流。通过酶联免疫吸附试验(ELISA)测量IL-6.IL-6的动脉血浆浓度比其余血液增加19倍。运动腿上IL-6的a-fv差异遵循与净IL-6释放相同的模式。在休息的腿上,无明显的a-fv差异或净IL-6释放。这项工作是由2.5千克活动肌肉产生的,这意味着在运动的最后2小时内,IL-6产生的中位数为6.8 ng min-1(千克活动肌肉)-1(范围为3.96-9.69 ng min- 1 kg-1)。在运动的最后2小时内,肌肉中的IL-6净释放量比动脉IL-6浓度升高高17倍,并且在运动5小时后的1分钟内,其净释放量为一半血浆中IL-6含量的变化。这表明肌肉运动过程中IL-6的转换率很高。我们建议骨骼肌收缩肌肉产生的IL-6在长时间运动中有助于维持葡萄糖稳态。

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