首页> 外文期刊>The Journal of Physiology >Effect of hyperinsulinaemia-hyperaminoacidaemia on leg muscle protein synthesis and breakdown: reassessment of the two-pool arterio-venous balance model
【24h】

Effect of hyperinsulinaemia-hyperaminoacidaemia on leg muscle protein synthesis and breakdown: reassessment of the two-pool arterio-venous balance model

机译:高胰岛素血症 - 超亚氨基血症对腿部肌肉蛋白质合成及分解的影响:双层动脉静脉平衡模型重新评估

获取原文
获取原文并翻译 | 示例
           

摘要

Accurate measurement of muscle protein turnover is critical for understanding the physiological processes underlying muscle atrophy and hypertrophy. Several mathematical approaches, used in conjunction with a tracer amino acid infusion, have been described to derive protein synthesis and breakdown rates from a two-pool (artery-vein) model. Despite apparently common underlying principles, these approaches differ significantly (some seem to not take into account arterio-venous shunting of amino acids, which comprises similar to 80-90% of amino acids appearing in the vein) and most do not specify how tracer enrichment (i.e. mole percent excess (MPE) or tracer-to-tracee ratio (TTR)) and amino acid concentration (i.e. unlabelled only or total labelled plus unlabelled) should be expressed, which could have a significant impact on the outcome when using stable isotope labelled tracers. We developed equations that avoid these uncertainties and used them to calculate leg phenylalanine (Phe) kinetics in subjects who received a [H-2(5)] Phe tracer infusion during postabsorptive conditions and during a hyperinsulinaemic-euglycaemic clamp with concomitant protein ingestion. These results were compared with those obtained by analysing the same data with previously reported equations. Only some of them computed the results correctly when used with MPE as the enrichment measure and total (tracer+tracee) Phe concentrations; errors up to several-fold in magnitude were noted when the same approaches were used in conjunction with TTR and/or unlabelled concentration only, or when using the other approaches (irrespective of how concentration and enrichment are expressed). Our newly developed equations should facilitate accurate calculation of protein synthesis and breakdown rates.
机译:准确测量肌肉蛋白质的转化对于了解肌肉萎缩和肥大潜水的生理过程至关重要。已经描述了与示踪剂氨基酸输注结合使用的几种数学方法,从而从双池(动脉静脉)模型中衍生蛋白质合成和分解速率。尽管显然是普遍的潜在原则,但这些方法有显着差异(有些似乎没有考虑氨基酸的动脉静脉分流,其包含类似于静脉中出现的80-90%的氨基酸),并且大多数情况下都没有说明富集的富集程度如何(即摩尔百分比过量(MPE)或跟踪到痕迹比(TTR))和氨基酸浓度(即仅被打开或贴标签的总和未标记的),这可能对使用稳定同位素时的结果产生显着影响标记的示踪剂。我们开发了避免这些不确定性的方程,并使用它们在接受[H-2(5)] Phe Tracer输注的受试者中计算腿苯丙氨酸(PHE)动力学在清醒条件下以及具有伴随蛋白质摄取的超胰岛素血症 - Euglyclyclation期间。将这些结果与通过通过先前报告的方程分析相同数据而获得的结果进行了比较。当它们与MPE一起用作富集测量和总(示踪剂+ TRACEE)PHE浓度时,它们中只有其中一些计算结果;当相同的方法与TTR和/或未标记的浓度结合使用时或使用其他方法时使用相同的方法(无论是否表达如何表达)时,应注意到多达几倍的误差。我们新开发的方程应促进蛋白质合成和击穿率的准确计算。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号