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卵磷脂对胆盐诱导的胆管损伤的细胞保护机制的部分特征

Partial characterization of cytoprotective mechanisms of lecithin against bile salt-induced bile duct damage.

作者信息

Tsuboi Kazuhiko, Tazuma Susumu, Nishioka Tomoji, Chayama Kazuaki

机构信息

Department of Medicine and Molecular Science, Division of Frontier Medical Science Programs for Biomedical Research, Graduate School of Biomedical Sciences, Hiroshima University, 1-2-3 Kasumi, Minami-ku, 734-8551, Hiroshima, Japan.

出版信息

J Gastroenterol. 2004 Oct;39(10):955-60. doi: 10.1007/s00535-003-1432-0.

Abstract

BACKGROUND

We recently demonstrated that cyclosporine A causes a disproportionate reduction of biliary lipid secretion, and this is inhibited by hydrophilic bile salts through the enhancing of biliary lecithin secretion. In the present study, the underlying mechanism of such a cytoprotective action of hydrophilic bile salts was determined with attention to the possible role of lecithin.

METHODS

Immortalized mouse cholangiocytes were cultured for 4 h with taurine conjugates of a hydrophobic bile salt (cholate [TC]), and hydrophilic bile salts (ursodeoxycholate [TUDC], betamuricholate [TbetaMC], and alphamuricholate [TalphaMC]), at 200 microM, in the presence or absence of lecithin (5, 10, 25, 50, 100, or 200 microM), followed by flow cytometric detection of apoptosis, using Annexin V-fluorescein isothiocyanate (FITC)/propidium iodide (PI) staining. Cholangiocyte bile salt transporter mRNAs (apical sodium-dependent bile-salt transporter [Asbt] and multidrug resistance protein 3 [Mrp3]) were determined by reverse transcription-polymerase chain reaction (RT-PCR).

RESULTS

Apoptosis was induced by all of the bile salts (TC > TUDC, TbetaMC, and TalphaMC). Interestingly, bile salt-induced apoptosis was inhibited by lecithin in a concentration-dependent manner. Further, RT-PCR showed that the expressions of Asbt and Mrp3 mRNAs were enhanced by all the bile salts, whereas lecithin reduced Asbt expression, but enhanced Mrp3 expression.

CONCLUSIONS

These findings indicate that bile salts cause bile-duct cell damage through Asbt-mediated uptake, but that biliary lecithin physiologically inhibits such damage by reducing the expression of this transporter. In addition, the induction of Mrp3 expression by lecithin may play a role in inhibiting the accumulation of bile. Thus, the modulation of lecithin secretion into bile may be another important target for the treatment of biliary disorders.

摘要

背景

我们最近证明,环孢素A会导致胆汁脂质分泌不成比例地减少,而亲水性胆盐通过增强胆汁卵磷脂分泌来抑制这种情况。在本研究中,我们关注卵磷脂的可能作用,确定了亲水性胆盐这种细胞保护作用的潜在机制。

方法

将永生化小鼠胆管细胞与200微摩尔的疏水性胆盐(胆酸盐[TC])以及亲水性胆盐(熊去氧胆酸盐[TUDC]、β-鼠胆酸盐[TβMC]和α-鼠胆酸盐[TαMC])的牛磺酸共轭物一起培养4小时,在有或没有卵磷脂(5、10、25、50、100或200微摩尔)的情况下,然后使用膜联蛋白V-异硫氰酸荧光素(FITC)/碘化丙啶(PI)染色通过流式细胞术检测细胞凋亡。通过逆转录-聚合酶链反应(RT-PCR)测定胆管细胞胆盐转运蛋白mRNA(顶端钠依赖性胆盐转运蛋白[Asbt]和多药耐药蛋白3[Mrp3])。

结果

所有胆盐均诱导细胞凋亡(TC>TUDC、TβMC和TαMC)。有趣的是,胆盐诱导的细胞凋亡被卵磷脂以浓度依赖性方式抑制。此外,RT-PCR显示所有胆盐均增强了Asbt和Mrp3 mRNA的表达,而卵磷脂降低了Asbt的表达,但增强了Mrp3的表达。

结论

这些发现表明,胆盐通过Asbt介导的摄取导致胆管细胞损伤,但胆汁卵磷脂通过降低该转运蛋白的表达在生理上抑制这种损伤。此外,卵磷脂诱导Mrp3表达可能在抑制胆汁积聚中起作用。因此,调节胆汁中卵磷脂的分泌可能是治疗胆道疾病的另一个重要靶点。

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