Crawford J M, Ransil B J, Potter C S, Westmoreland S V, Gollan J L
J Clin Invest. 1987 Apr;79(4):1172-80. doi: 10.1172/JCI112934.
Mechanisms for transport of bilirubin and its conjugates in hepatocytes have not been defined. We investigated the hepatic processing of bilirubin glucuronides and their precursors, and characterized the disposition of bile pigments arising from intraversus extrahepatic sources. Tracer doses of purified radiolabeled biliverdin, bilirubin, bilirubin monoglucuronide (BMG) or diglucuronide (BDG) were administered intravenously to intact normal or jaundiced homozygous Gunn rats. Rapid sequential analysis of radiolabeled BMG and BDG in bile revealed comparable excretion patterns following biliverdin and bilirubin injection, with BDG as the major pigment. Biliary excretion of radiolabeled conjugates from injected BMG was more rapid, with BMG predominating. Excretion of injected BDG in normal rats and BMG or BDG in Gunn rats was virtually identical to that of unaltered BMG in normal rats. Model independent analysis by deconvolution provided objective comparison of the disposition of radiolabeled pigments from the different sources. These findings indicate that bilirubin glucuronides formed in the liver from endogenous (hepatic) and exogenous (extrahepatic) sources of bilirubin follow a similar excretory pathway. BMG formed endogenously is converted preferentially to BDG, whereas circulating BMG is excreted predominantly unchanged. Exogenous conjugated bilirubins are excreted more rapidly than those generated intrahepatically, by a transcellular pathway that is largely independent of the conjugation system.
胆红素及其结合物在肝细胞中的转运机制尚未明确。我们研究了胆红素葡萄糖醛酸酯及其前体的肝脏处理过程,并对肝内和肝外来源产生的胆色素的处置情况进行了表征。向完整的正常或黄疸纯合子Gunn大鼠静脉注射示踪剂量的纯化放射性标记的胆绿素、胆红素、胆红素单葡萄糖醛酸酯(BMG)或双葡萄糖醛酸酯(BDG)。对胆汁中放射性标记的BMG和BDG进行快速连续分析,结果显示注射胆绿素和胆红素后,排泄模式相似,以BDG为主要色素。注射BMG后,放射性标记结合物的胆汁排泄更快,以BMG为主。正常大鼠中注射BDG以及Gunn大鼠中注射BMG或BDG的排泄情况与正常大鼠中未改变的BMG的排泄情况几乎相同。通过去卷积进行的模型独立分析提供了来自不同来源的放射性标记色素处置情况的客观比较。这些发现表明,由内源性(肝脏)和外源性(肝外)胆红素来源在肝脏中形成的胆红素葡萄糖醛酸酯遵循相似的排泄途径。内源性形成的BMG优先转化为BDG,而循环中的BMG主要以未改变的形式排泄。外源性结合胆红素通过一种很大程度上独立于结合系统的跨细胞途径,比肝内产生的结合胆红素排泄得更快。