Kroker R, Anwer M S, Hegner D
Naunyn Schmiedebergs Arch Pharmacol. 1978 Jul;303(3):287-93. doi: 10.1007/BF00498056.
In order to characterize the transport of bile acids through the liver and to study the influence of drugs on these processes, a kinetic model for hepatobiliary transport of taurocholic acid (TC) using the isolated perfused liver was developed. After the system was brought to a steady state by infusing TC at a constant rate, a tracer dose of 14C-TC was injected into the medium. The medium disappearance of 14C-TC followed a first-order kinetic with a single rate constant. The plot of the biliary secretion rate of radioactivity versus time revealed a curve composed of at least three exponential components. From the described results and the present knowledge of hepatobiliary transport of bile acids we proposed a three compartment model, composed of a perfusion medium compartment and two liver compartments. Parameters calculated from the model constants agreed well with model-independent estimations. The influence of bromosulfophthalein (BSP) on the kinetic parameters was studied to compare the result with the known effect of BSP on hepatic transport of taurocholic acid. BSP decreased the constant describing the fractional transfer of taurocholic acid from medium into the liver, which is in agreement with the inhibition of hepatic uptake of taurocholic acid by BSP. Thus a three compartment model may adequately define the hepatobiliary transport of taurocholic acid in the isolated perfused rat liver.
为了描述胆汁酸在肝脏中的转运过程,并研究药物对这些过程的影响,我们建立了一个使用离体灌注肝脏的牛磺胆酸(TC)肝胆转运动力学模型。在以恒定速率输注TC使系统达到稳态后,向培养基中注射微量的14C-TC。14C-TC在培养基中的消失遵循具有单一速率常数的一级动力学。放射性物质的胆汁分泌速率随时间的变化曲线显示为由至少三个指数成分组成的曲线。根据上述结果以及目前关于胆汁酸肝胆转运的知识,我们提出了一个三室模型,该模型由一个灌注培养基室和两个肝脏室组成。从模型常数计算得到的参数与不依赖模型的估计结果吻合良好。研究了溴磺酞钠(BSP)对动力学参数的影响,并将结果与已知的BSP对牛磺胆酸肝脏转运的影响进行比较。BSP降低了描述牛磺胆酸从培养基向肝脏分数转移的常数,这与BSP对牛磺胆酸肝脏摄取的抑制作用一致。因此,三室模型可以充分定义离体灌注大鼠肝脏中牛磺胆酸的肝胆转运。