Helland S J, Grisdale-Helland B, Nissen S
Department of Animal Science, Iowa State University, Ames 50011.
Am J Physiol. 1988 Apr;254(4 Pt 1):E414-8. doi: 10.1152/ajpendo.1988.254.4.E414.
To assess the effect of site of isotope infusion on estimates of leucine metabolism infusions of alpha-[4,5-3H]ketoisocaproate (KIC) and [U-14C]leucine were made into the left or right ventricles of sheep and pigs. Blood was sampled from the opposite ventricle. In both species, left ventricular infusions resulted in significantly lower specific radioactivities (SA) of [14C]leucine and [3H]KIC. [14C]KIC SA was found to be insensitive to infusion and sampling sites. [14C]KIC was in addition found to be equal to the SA of [14C]leucine only during the left heart infusions. Therefore [14C]KIC SA was used as the only estimate for [14C]SA in the equations for the two-pool model. This model eliminated the influence of site of infusion and blood sampling on the estimates for leucine entry and reduced the impact on the estimates for proteolysis and oxidation. This two-pool model could not compensate for the underestimation of transamination reactions occurring during the traditional venous isotope infusion and arterial blood sampling.
为评估同位素输注部位对亮氨酸代谢估计值的影响,将α-[4,5-³H]酮异己酸(KIC)和[U-¹⁴C]亮氨酸输注到绵羊和猪的左心室或右心室。从对侧心室采集血液样本。在这两个物种中,左心室输注导致[¹⁴C]亮氨酸和[³H]KIC的比放射性(SA)显著降低。发现[¹⁴C]KIC SA对输注和采样部位不敏感。此外,仅在左心输注期间发现[¹⁴C]KIC等于[¹⁴C]亮氨酸的SA。因此,在双池模型方程中,[¹⁴C]KIC SA被用作[¹⁴C]SA的唯一估计值。该模型消除了输注部位和采血对亮氨酸进入估计值产生的影响,并减少了对蛋白水解和氧化估计值的影响。这种双池模型无法弥补传统静脉同位素输注和动脉血采样过程中转氨反应的低估。