Roberts M S, Ballinger L N, Weiss M
Department of Medicine, Princess Alexandra Hospital, Buranda, Qld, Australia.
J Pharm Pharmacol. 1998 Aug;50(8):865-70. doi: 10.1111/j.2042-7158.1998.tb04001.x.
It is recognized that vascular dispersion in the liver is a determinant of high first-pass extraction of solutes by that organ. Such dispersion is also required for translation of in-vitro microsomal activity into in-vivo predictions of hepatic extraction for any solute. We therefore investigated the relative dispersion of albumin transit times (CV2) in the livers of adult and weanling rats and in elasmobranch livers. The mean and normalized variance of the hepatic transit time distribution of albumin was estimated using parametric non-linear regression (with a correction for catheter influence) after an impulse (bolus) input of labelled albumin into a single-pass liver perfusion. The mean+/-s.e. of CV2 for albumin determined in each of the liver groups were 0.85+/-0.20 (n = 12), 1.48+/-0.33 (n = 7) and 0.90+/-0.18 (n = 4) for the livers of adult and weanling rats and elasmobranch livers, respectively. These CV2 are comparable with that reported previously for the dog and suggest that the CV2 of the liver is of a similar order of magnitude irrespective of the age and morphological development of the species. It might, therefore, be justified, in the absence of other information, to predict the hepatic clearances and availabilities of highly extracted solutes by scaling within and between species livers using hepatic elimination models such as the dispersion model with a CV2 of approximately unity.
人们认识到,肝脏中的血管分散是该器官对溶质进行高首过提取的一个决定因素。对于任何溶质,将体外微粒体活性转化为体内肝脏提取预测也需要这种分散。因此,我们研究了成年大鼠、断奶大鼠和鲨鱼肝脏中白蛋白转运时间(CV2)的相对分散情况。在将标记白蛋白单次脉冲输入肝脏灌注后,使用参数非线性回归(校正导管影响)估计白蛋白肝脏转运时间分布的均值和归一化方差。在每个肝脏组中测定的白蛋白CV2的均值±标准误分别为:成年大鼠肝脏0.85±0.20(n = 12)、断奶大鼠肝脏1.48±0.33(n = 7)和鲨鱼肝脏0.90±0.18(n = 4)。这些CV2与先前报道的狗的CV2相当,表明无论物种的年龄和形态发育如何,肝脏的CV2都处于相似的数量级。因此,在没有其他信息的情况下,使用诸如CV2约为1的分散模型等肝脏消除模型,通过在种内和种间肝脏进行缩放来预测高提取溶质的肝脏清除率和可用性可能是合理的。