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乙炔雌二醇诱导的胆汁淤积中胆小管膜酶的胆汁排泄增强。熊去氧胆酸给药的影响。

Enhanced biliary excretion of canalicular membrane enzymes in ethynylestradiol-induced cholestasis. Effects of ursodeoxycholic acid administration.

作者信息

Arrese M, Pizarro M, Solís N, Koenig C, Accatino L

机构信息

Departamento de Gastroenterología, Facultad de Medicina, Pontificia Universidad Católica de Chile, Santiago, Chile.

出版信息

Biochem Pharmacol. 1995 Oct 12;50(8):1223-32. doi: 10.1016/0006-2952(95)00262-x.

Abstract

Cholestasis is associated with a marked increase in the release of canalicular membrane enzymes into bile. This phenomenon has been related to an increased lability of these canalicular membrane integral proteins to the solubilizing effects of secreted bile salts. To further characterize the effects of oral ursodeoxycholic acid (UDCA) administration on ethynylestradiol (EE)-induced cholestasis, the influence of this bile acid on changes in biliary excretion of membrane-bound enzymes was investigated. Bile flow, basal bile salt and biliary lipid secretory rates, the maximum secretory rate of taurocholate (TC SRm), and the biliary excretion of the canalicular membrane-bound ectoenzymes alkaline phosphatase (ALP) and gamma-glutamyl transpeptidase (GGT) were measured in rats after EE and/or UDCA administration. The activities of ALP, GGT and Na+,K(+)-ATPase in purified isolated canalicular and sinusoidal membrane fractions and the ultrastructure of hepatic acinus, including histochemical studies of ALP distribution, were also examined. EE significantly reduced bile flow, bile salt and biliary lipid secretory rates, and TC SRm, and caused dilatation and loss of microvilli at the canalicular pole of hepatocytes. Biliary excretion of ALP increased 2-fold, whereas biliary excretion of GGT was unchanged. The relationship between biliary excretion of ALP or GGT and bile salt secretion (units of enzyme activity secreted per nanomole of bile salt) was greater in EE-treated rats compared with controls (2.1- and 1.5-fold greater for ALP and GGT, respectively), indicating that in EE-induced cholestasis more enzyme was released into bile per nanomole of bile salt. Na+,K(+)-ATPase activity in sinusoidal membrane fraction was reduced significantly, whereas ALP activity increased in both membrane fractions in EE-treated rats. The histochemical distribution of ALP in the acinus showed a strong reaction in acinar zone 3 and at both the canalicular and sinusoidal membranes. Oral administration of UDCA prevented EE-induced bile secretory failure by normalizing bile flow, bile salt and biliary phospholipid secretory rates, and TC SRm. UDCA also prevented the EE-induced changes in the biliary excretion of enzymes. On the contrary, UDCA did not modify either the enzyme activity in isolated membrane fractions or the morphological or ALP histochemical changes associated with EE administration. These data indicate that in EE-induced cholestasis changes occur at the canalicular membrane, enabling this portion of the plasma membrane to be more susceptible to the solubilizing effect of bile salt, and that oral administration of UDCA prevents bile secretory failure and changes in the biliary excretion of ALP and GGT in EE-treated rats.

摘要

胆汁淤积与胆小管膜酶释放至胆汁中的显著增加有关。这种现象与这些胆小管膜整合蛋白对分泌型胆盐溶解作用的稳定性增加有关。为了进一步表征口服熊去氧胆酸(UDCA)对乙炔雌二醇(EE)诱导的胆汁淤积的影响,研究了这种胆汁酸对膜结合酶胆汁排泄变化的影响。在给予EE和/或UDCA后,测量大鼠的胆汁流量、基础胆盐和胆汁脂质分泌率、牛磺胆酸盐最大分泌率(TC SRm)以及胆小管膜结合的外切酶碱性磷酸酶(ALP)和γ-谷氨酰转肽酶(GGT)的胆汁排泄。还检测了纯化的分离胆小管和肝血窦膜组分中ALP、GGT和Na +,K(+)-ATP酶的活性,以及肝腺泡的超微结构,包括ALP分布的组织化学研究。EE显著降低了胆汁流量、胆盐和胆汁脂质分泌率以及TC SRm,并导致肝细胞胆小管极处微绒毛扩张和丢失。ALP的胆汁排泄增加了2倍,而GGT的胆汁排泄未改变。与对照组相比,EE处理的大鼠中ALP或GGT的胆汁排泄与胆盐分泌之间的关系更大(ALP和GGT分别大2.1倍和1.5倍),这表明在EE诱导的胆汁淤积中,每纳摩尔胆盐有更多的酶释放到胆汁中。肝血窦膜组分中的Na +,K(+)-ATP酶活性显著降低,而EE处理的大鼠中两个膜组分中的ALP活性均增加。ALP在腺泡中的组织化学分布在腺泡3区以及胆小管和肝血窦膜处均显示出强烈反应。口服UDCA可通过使胆汁流量、胆盐和胆汁磷脂分泌率以及TC SRm正常化来预防EE诱导的胆汁分泌衰竭。UDCA还可预防EE诱导的酶胆汁排泄变化。相反,UDCA既未改变分离膜组分中的酶活性,也未改变与给予EE相关的形态学或ALP组织化学变化。这些数据表明,在EE诱导的胆汁淤积中,胆小管膜发生了变化,使质膜的这一部分更容易受到胆盐的溶解作用,并且口服UDCA可预防EE处理的大鼠中的胆汁分泌衰竭以及ALP和GGT胆汁排泄的变化。

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