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Protein metabolism in leg muscle following an endotoxin injection in healthy volunteers

机译:健康志愿者注射内毒素后腿部肌肉的蛋白质代谢

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The human endotoxin model has been used to study the early phase of sepsis. The aim of the present study was to assess leg muscle protein kinetics after an endotoxin challenge given to healthy human volunteers. Six healthy male subjects were studied in the post-absorptive state before and during 4 h following an intravenous endotoxin bolus (4 ng/kg of body weight). Primed continuous infusion of [~2H_5]phenylalanine and [~2H_3]3-methylhistidine in combination with sampling from the radial artery, femoral vein and muscle tissue were used to assess leg muscle protein kinetics. Both two- and three-compartment models were used to calculate protein kinetics. In addition 26S proteasome activity and protein ubiquitination were assessed. An increase in the net release of phenylalanine from the leg following the endotoxin challenge was observed; however, this phenylalanine originates from the free intracellular pool and not from protein. Net protein balance was unchanged, whereas both protein synthesis and breakdown were decreased. Degradation rates of contractile proteins were not affected by endotoxin, as indicated by an unchanged rate of appearance of 3-methylhistidine from leg muscle. In addition, proteasome activity and protein ubiquitination were unaffected by endotoxaemia. In conclusion, intravenous endotoxin administration to healthy volunteers resulted in an increased release of free phenylalanine from skeletal muscle, whereas protein balance was unaffected. Both protein synthesis and breakdown were decreased to a similar extent.
机译:人类内毒素模型已用于研究败血症的早期阶段。本研究的目的是评估给予健康人类志愿者的内毒素攻击后腿部肌肉蛋白动力学。在静脉内毒素推注(4 ng / kg体重)之前和之后的4小时内,以吸收后状态研究了六名健康男性受试者。预灌注连续注入[〜2H_5]苯丙氨酸和[〜2H_3] 3-甲基组氨酸,并结合the动脉,股静脉和肌肉组织的采样,以评估腿部肌肉蛋白动力学。两室和三室模型均用于计算蛋白质动力学。另外,评估了26S蛋白酶体活性和蛋白质泛素化。观察到内毒素攻击后,腿部苯丙氨酸的净释放量增加;但是,这种苯丙氨酸来源于游离的细胞内池而不是蛋白质。净蛋白质平衡不变,而蛋白质合成和分解均降低。收缩蛋白的降解速率不受内毒素影响,如腿部肌肉中3-甲基组氨酸的出现速率不变。另外,蛋白酶体活性和蛋白质泛素化不受内毒素血症的影响。总之,对健康志愿者进行静脉内毒素给药导致骨骼肌中游离苯丙氨酸的释放增加,而蛋白质平衡并未受到影响。蛋白质合成和分解均降低到相似的程度。

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