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大鼠肝细胞与肝癌细胞融合实现永生化。II. 肝癌细胞(HPCT)中胆汁酸转运与合成的研究。

Immortalization of rat hepatocytes by fusion with hepatoma cells. II. Studies on the transport and synthesis of bile acids in hepatocytoma (HPCT) cells.

作者信息

Blumrich M, Zeyen-Blumrich U, Pagels P, Petzinger E

机构信息

Institut für Pharmakologie und Toxikologie, Justus-Liebig-Universität, Giessen, Germany.

出版信息

Eur J Cell Biol. 1994 Aug;64(2):339-47.

PMID:7813521
Abstract

Hepatocytoma (HPCT) cells were screened for the uptake of bile acids, the organic anion bumetanide and phalloidin. In addition, the rate of bile acid synthesis and the ability to conjugate exogenously added free bile acids was investigated. The unconjugated bile acid cholate is transported via carrier-mediated uptake into HPCT cells of the clone 1E3. This transport is expressed less by HPCT clones 1F9 and 2E9. Cholate uptake is 40% sodium-dependent, temperature-sensitive, and reveals a km-value of 47 +/- 9 pmol/l and a Vmax-value of 94 +/- 29 pmol x min-1 x mg-1. However, all of the HPCT clones lack carrier-mediated uptake of glycocholate and taurocholate. The clones which possess cholate transport are sensitive to phalloidin and take up bumetanide. In higher cell passages cholate transport and the sensitivity to phalloidin are reduced. This process is not prevented by a selection procedure with HAT-medium, nor is it stimulated by nicotinamide, dimethyl sulfoxide, or sodium butyrate. The cells of the 1E3, 1F9 and 2E9 clones, but not Fao hepatoma cells synthesize bile acids endogenously even after 60 passages, and conjugate exogenously added cholate with taurine and glycine. These results indicate that liver-specific properties of freshly isolated hepatocytes which are lacking in the parental hepatoma cells are maintained in HPCT cells.

摘要

对肝癌细胞(HPCT)进行了胆汁酸、有机阴离子布美他尼和鬼笔环肽摄取的筛选。此外,还研究了胆汁酸合成速率以及对外源添加的游离胆汁酸进行结合的能力。未结合的胆汁酸胆酸盐通过载体介导的摄取转运到克隆1E3的HPCT细胞中。这种转运在HPCT克隆1F9和2E9中表达较少。胆酸盐摄取40%依赖于钠,对温度敏感,其Km值为47±9 pmol/l,Vmax值为94±29 pmol·min⁻¹·mg⁻¹。然而,所有的HPCT克隆都缺乏载体介导的甘氨胆酸盐和牛磺胆酸盐摄取。具有胆酸盐转运功能的克隆对鬼笔环肽敏感,并摄取布美他尼。在较高的细胞传代中,胆酸盐转运和对鬼笔环肽的敏感性降低。这个过程既不能被HAT培养基的选择程序阻止,也不会被烟酰胺、二甲基亚砜或丁酸钠刺激。即使在传代60次后,1E3、1F9和2E9克隆的细胞,而不是Fao肝癌细胞,仍能内源性合成胆汁酸,并将外源添加的胆酸盐与牛磺酸和甘氨酸结合。这些结果表明,新鲜分离的肝细胞中缺乏的亲代肝癌细胞所没有的肝脏特异性特性在HPCT细胞中得以保留。

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