Tan E, Pang K S
Department of Pharmaceutical Sciences, Faculty of Pharmacy, University of Toronto, 19 Russell Street, Toronto, Ontario, Canada M5S 2S2.
Drug Metab Dispos. 2001 Mar;29(3):335-46.
The metabolic activities and tissue binding of estrone (E1) and estrone sulfate (E1S) on futile cycling were examined. Desulfation of E1S in the 9000g supernatant fraction (S9) of periportal (PP) and perivenous (PV) rat hepatocytes were of similar V (2.9 +/- 1.0 and 2.4 +/- 0.9 nmol/min/mg of S9 protein), K (30.4 +/- 8.3 and 34.8 +/- 6.6 microM), and desulfation intrinsic clearances (V/K of 77 and 55 microl/min/10(6) cells). The intrinsic clearance towards E1 sulfation (1 microM) in cytosolic preparations of PV hepatocytes was 4 times that of PP hepatocytes (V/K of 26.4 +/- 9.5 versus 6.1 +/- 2.2 microl/min/mg of cytosolic protein or 13 +/- 5 versus 3.1 +/- 1.1 microl/min/10(6) cells). The observation was consistent with the immunolocalization of estrogen sulfotransferase (PV/PP ratio of 3.4 +/- 1.1) but not hydroxysteroid sulfotransferase (PV/PP ratio of 0.29 +/- 0.21) nor phenol sulfotransferase (PV/PP ratio of 1.13 +/- 0.23). Upon incubation of E1S (1-125 microM) with hepatocytes (30 min), higher concentrations of E1S and E1 were observed within PP than in PV cells, and saturation was evident at the higher concentrations. Based on the in vitro metabolic and tissue binding parameters for E1S and E1 and the published zonal uptake clearances of E1S (116 microl/min/10(6) cells), fitting revealed that uptake of E1 (1484 and 1463 microl/min/10(6) cells) by PP and PV cells was rapid and similar, and E1 sulfation was the slowest step in futile cycling. The greater metabolism of E1 in PV region led to higher levels of E1 and E1S in PP hepatocytes, and the nonlinear uptake, binding, and vesicular accumulation of E1S resulted in different t(1/2) values for E1S and E1.
研究了雌酮(E1)和硫酸雌酮(E1S)在无效循环中的代谢活性及组织结合情况。门静脉周围(PP)和肝静脉周围(PV)大鼠肝细胞9000g上清液组分(S9)中E1S的脱硫反应具有相似的V(分别为2.9±1.0和2.4±0.9 nmol/分钟/毫克S9蛋白)、K(分别为30.4±8.3和34.8±6.6 μM)以及脱硫内在清除率(V/K分别为77和55微升/分钟/10⁶个细胞)。PV肝细胞胞质制剂中对E1硫酸化(1 μM)的内在清除率是PP肝细胞的4倍(V/K分别为26.4±9.5与6.1±2.2微升/分钟/毫克胞质蛋白,或13±5与3.1±1.1微升/分钟/10⁶个细胞)。该观察结果与雌激素硫酸转移酶的免疫定位一致(PV/PP比值为3.4±1.1),但与羟基类固醇硫酸转移酶(PV/PP比值为0.29±0.21)和酚硫酸转移酶(PV/PP比值为1.13±0.23)不一致。将E1S(1 - 125 μM)与肝细胞孵育30分钟后,PP细胞内观察到的E1S和E1浓度高于PV细胞,且在较高浓度下出现饱和现象。基于E1S和E1的体外代谢及组织结合参数以及已发表的E1S区域摄取清除率(116微升/分钟/10⁶个细胞),拟合结果显示PP和PV细胞对E1的摄取(分别为1484和1463微升/分钟/10⁶个细胞)迅速且相似,而E1硫酸化是无效循环中最慢的步骤。PV区域中E1的代谢更强导致PP肝细胞中E1和E1S水平更高,且E1S的非线性摄取、结合及囊泡积累导致E1S和E1的t(1/2)值不同。